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1.
J Med Chem ; 65(2): 1265-1282, 2022 01 27.
Artigo em Inglês | MEDLINE | ID: mdl-35081715

RESUMO

NIMA-related kinase 1 (Nek1) has lately garnered attention for its widespread function in ciliogenesis, apoptosis, and the DNA-damage response. Despite its involvement in various diseases and its potential as a cancer drug target, no directed medicinal chemistry efforts toward inhibitors against this dark kinase are published. Here, we report the structure-guided design of a potent small-molecule Nek1 inhibitor, starting from a scaffold identified by kinase cross-screening analysis. Seven lead compounds were identified in silico and evaluated for their inhibitory activity. The top compound, 10f, was further profiled for efficacy, toxicity, and bioavailability in a zebrafish polycystic kidney disease model. Administration of 10f caused the expansion of fluorescence-labeled proximal convoluted tubules, supporting our hypothesis that Nek1-inhibition causes cystic kidneys in zebrafish embryos. Compound 10f displayed insignificant inhibition in 48 of 50 kinases in a selectivity test panel. The findings provide a powerful tool to further elucidate the function and pharmacology of this neglected kinase.


Assuntos
Desenho de Fármacos , Embrião não Mamífero/efeitos dos fármacos , Quinase 1 Relacionada a NIMA/antagonistas & inibidores , Doenças Renais Policísticas/tratamento farmacológico , Pronefro/efeitos dos fármacos , Inibidores de Proteínas Quinases/síntese química , Inibidores de Proteínas Quinases/farmacologia , Animais , Embrião não Mamífero/enzimologia , Doenças Renais Policísticas/enzimologia , Doenças Renais Policísticas/patologia , Pronefro/embriologia , Pronefro/enzimologia , Peixe-Zebra
2.
Sci Rep ; 7(1): 8874, 2017 08 21.
Artigo em Inglês | MEDLINE | ID: mdl-28827763

RESUMO

Peroxiredoxin1 (Prdx1) is an antioxidant enzyme belonging to the peroxiredoxin family of proteins. Prdx1 catalyzes the reduction of H2O2 and alkyl hydroperoxide and plays an important role in different biological processes. Prdx1 also participates in various age-related diseases and cancers. In this study, we investigated the role of Prdx1 in pronephros development during embryogenesis. Prdx1 knockdown markedly inhibited proximal tubule formation in the pronephros and significantly increased the cellular levels of reactive oxygen species (ROS), which impaired primary cilia formation. Additionally, treatment with ROS (H2O2) severely disrupted proximal tubule formation, whereas Prdx1 overexpression reversed the ROS-mediated inhibition in proximal tubule formation. Epistatic analysis revealed that Prdx1 has a crucial role in retinoic acid and Wnt signaling pathways during pronephrogenesis. In conclusion, Prdx1 facilitates proximal tubule formation during pronephrogenesis by regulating ROS levels.


Assuntos
Peroxirredoxinas/metabolismo , Pronefro/embriologia , Pronefro/metabolismo , Espécies Reativas de Oxigênio/metabolismo , Tretinoína/metabolismo , Via de Sinalização Wnt , Sequência de Aminoácidos , Animais , Sequência Conservada , Cisteína , Regulação da Expressão Gênica no Desenvolvimento , Técnicas de Silenciamento de Genes , Organogênese/genética , Peroxirredoxinas/química , Peroxirredoxinas/genética , Fenótipo , Xenopus laevis
3.
Dev Biol ; 428(1): 148-163, 2017 08 01.
Artigo em Inglês | MEDLINE | ID: mdl-28579318

RESUMO

The zebrafish kidney is conserved with other vertebrates, making it an excellent genetic model to study renal development. The kidney collects metabolic waste using a blood filter with specialized epithelial cells known as podocytes. Podocyte formation is poorly understood but relevant to many kidney diseases, as podocyte injury leads to progressive scarring and organ failure. zeppelin (zep) was isolated in a forward screen for kidney mutants and identified as a homozygous recessive lethal allele that causes reduced podocyte numbers, deficient filtration, and fluid imbalance. Interestingly, zep mutants had a larger interrenal gland, the teleostean counterpart of the mammalian adrenal gland, which suggested a fate switch with the related podocyte lineage since cell proliferation and cell death were unchanged within the shared progenitor field from which these two identities arise. Cloning of zep by whole genome sequencing (WGS) identified a splicing mutation in breast cancer 2, early onset (brca2)/fancd1, which was confirmed by sequencing of individual fish. Several independent brca2 morpholinos (MOs) phenocopied zep, causing edema, reduced podocyte number, and increased interrenal cell number. Complementation analysis between zep and brca2ZM_00057434 -/- zebrafish, which have an insertional mutation, revealed that the interrenal lineage was expanded. Importantly, overexpression of brca2 rescued podocyte formation in zep mutants, providing critical evidence that the brca2 lesion encoded by zep specifically disrupts the balance of nephrogenesis. Taken together, these data suggest for the first time that brca2/fancd1 is essential for vertebrate kidney ontogeny. Thus, our findings impart novel insights into the genetic components that impact renal development, and because BRCA2/FANCD1 mutations in humans cause Fanconi anemia and several common cancers, this work has identified a new zebrafish model to further study brca2/fancd1 in disease.


Assuntos
Proteína BRCA2/genética , Regulação da Expressão Gênica no Desenvolvimento , Organogênese/genética , Podócitos/citologia , Pronefro/embriologia , Proteínas de Peixe-Zebra/genética , Peixe-Zebra/embriologia , Animais , Animais Geneticamente Modificados , Diferenciação Celular , Proliferação de Células , Clonagem Molecular , Modelos Animais de Doenças , Hibridização in Situ Fluorescente , Morfolinos/genética , Pronefro/citologia , Peixe-Zebra/genética
4.
Biochem Biophys Res Commun ; 487(2): 209-215, 2017 May 27.
Artigo em Inglês | MEDLINE | ID: mdl-28411024

RESUMO

Epithelial cell adhesion molecule EpCAM is a transmembrane glycoprotein that is dynamically expressed in human and murine renal epithelia during development. The levels of EpCAM in the renal epithelium are upregulated both during regeneration after ischemia/reperfusion injury and in renal-derived carcinomas. The role of EpCAM in early kidney development, however, has remained unclear. The zebrafish pronephros shows a similar segmentation pattern to the mammalian metanephric nephron, and has recently emerged as a tractable model to study the regulatory programs governing early nephrogenesis. Since EpCAM shows persistent expression in the pronephros throughout early development, we developed a method to study the global changes in gene expression in specific pronephric segments of wild type and EpCAM-deficient zebrafish embryos. In epcam mutants, we found 379 differentially expressed genes. Gene ontology analysis revealed that EpCAM controls various developmental programs, including uretric bud development, morphogenesis of branching epithelium, regulation of cell differentiation and cilium morphogenesis.


Assuntos
Glicoproteínas de Membrana/metabolismo , Morfogênese/fisiologia , Pronefro/embriologia , Pronefro/metabolismo , Proteínas de Peixe-Zebra/metabolismo , Peixe-Zebra/embriologia , Peixe-Zebra/metabolismo , Animais , Regulação da Expressão Gênica no Desenvolvimento/fisiologia , Pronefro/crescimento & desenvolvimento , Peixe-Zebra/crescimento & desenvolvimento
5.
Dis Model Mech ; 9(8): 873-84, 2016 08 01.
Artigo em Inglês | MEDLINE | ID: mdl-27491085

RESUMO

Patients with von Hippel-Lindau (VHL) disease harbor a germline mutation in the VHL gene leading to the development of several tumor types including clear cell renal cell carcinoma (ccRCC). In addition, the VHL gene is inactivated in over 90% of sporadic ccRCC cases. 'Clear cell' tumors contain large, proliferating cells with 'clear cytoplasm', and a reduced number of cilia. VHL inactivation leads to the stabilization of hypoxia inducible factors 1a and 2a [HIF1a and HIF2a (HIF2a is also known as EPAS1)] with consequent up-regulation of specific target genes involved in cell proliferation, angiogenesis and erythropoiesis. A zebrafish model with a homozygous inactivation in the VHL gene (vhl(-/-)) recapitulates several aspects of the human disease, including development of highly vascular lesions in the brain and the retina and erythrocytosis. Here, we characterize for the first time the epithelial abnormalities present in the kidney of the vhl(-/-) zebrafish larvae as a first step in building a model of ccRCC in zebrafish. Our data show that the vhl(-/-) zebrafish kidney is characterized by an increased tubule diameter, disorganized cilia, the dramatic formation of cytoplasmic lipid vesicles, glycogen accumulation, aberrant cell proliferation and abnormal apoptosis. This phenotype of the vhl(-/-) pronephros is reminiscent of clear cell histology, indicating that the vhl(-/-) mutant zebrafish might serve as a model of early stage RCC. Treatment of vhl(-/-) zebrafish embryos with a small-molecule HIF2a inhibitor rescued the pronephric abnormalities, underscoring the value of the zebrafish model in drug discovery for treatment of VHL disease and ccRCC.


Assuntos
Carcinoma de Células Renais/patologia , Neoplasias Renais/patologia , Pronefro/metabolismo , Pronefro/patologia , Proteínas Supressoras de Tumor/metabolismo , Proteínas de Peixe-Zebra/metabolismo , Peixe-Zebra/embriologia , Peixe-Zebra/metabolismo , Animais , Apoptose , Fatores de Transcrição Hélice-Alça-Hélice Básicos/antagonistas & inibidores , Fatores de Transcrição Hélice-Alça-Hélice Básicos/metabolismo , Carcinoma de Células Renais/metabolismo , Proliferação de Células , Vesículas Citoplasmáticas/metabolismo , Desenvolvimento Embrionário , Glicogênio/metabolismo , Humanos , Neoplasias Renais/metabolismo , Túbulos Renais/embriologia , Túbulos Renais/metabolismo , Túbulos Renais/patologia , Túbulos Renais/ultraestrutura , Larva/metabolismo , Estadiamento de Neoplasias , Fenótipo , Pronefro/embriologia , Pronefro/ultraestrutura
6.
Int J Dev Biol ; 60(1-3): 57-63, 2016.
Artigo em Inglês | MEDLINE | ID: mdl-26934292

RESUMO

Pdzrn3, a multidomain protein with E3-ubiquitin ligase activity, has been reported to play a role in myoblast and osteoblast differentiation and, more recently, in neuronal and endothelial cell development. The expression of the pdzrn3 gene is developmentally regulated in various vertebrate tissues, including muscular, neural and vascular system. Little is known about its expression during kidney development, although genetic polymorphisms and alterations around the human pdzrn3 chromosomal region have been found to be associated with renal cell carcinomas and other kidney diseases. We investigated the pdzrn3 spatio-temporal expression pattern in Xenopus laevis embryos by in situ hybridization. We focused our study on the development of the pronephros, which is the embryonic amphibian kidney, functionally similar to the most primitive nephric structures of human kidney. To explore the role of pdzrn3 during renal morphogenesis, we performed loss-of-function experiments, through antisense morpholino injections and analysed the morphants using specific pronephric markers. Dynamic pdzrn3 expression was observed in embryonic tissues, such as somites, brain, eye, blood islands, heart, liver and pronephros. Loss of function experiments resulted in specific alterations of pronephros development. In particular, at early stages, pdzrn3 depletion was associated with a reduction of the pronephros anlagen and later, with perturbations of the tubulogenesis, including deformation of the proximal tubules. Rescue experiments, in which mRNA of the zebrafish pdzrn3 orthologue was injected together with the morpholino, allowed recovery of the kidney phenotypes. These results underline the importance of pdzrn3 expression for correct nephrogenesis.


Assuntos
Proteínas de Transporte/genética , Regulação da Expressão Gênica no Desenvolvimento , Morfogênese/genética , Pronefro/metabolismo , Proteínas de Xenopus/genética , Xenopus laevis/genética , Animais , Embrião não Mamífero/embriologia , Embrião não Mamífero/metabolismo , Teste de Complementação Genética , Humanos , Hibridização In Situ , Mutação , Pronefro/embriologia , Domínios RING Finger/genética , RNA Mensageiro/genética , Xenopus laevis/embriologia , Proteínas de Peixe-Zebra/genética
7.
Dev Biol ; 411(2): 231-245, 2016 Mar 15.
Artigo em Inglês | MEDLINE | ID: mdl-26827902

RESUMO

Kidney development requires the differentiation and organization of discrete nephron epithelial lineages, yet the genetic and molecular pathways involved in these events remain poorly understood. The embryonic zebrafish kidney, or pronephros, provides a simple and useful model to study nephrogenesis. The pronephros is primarily comprised of two types of epithelial cells: transportive and multiciliated cells (MCCs). Transportive cells occupy distinct tubule segments and are characterized by the expression of various solute transporters, while MCCs function in fluid propulsion and are dispersed in a "salt-and-pepper" fashion within the tubule. Epithelial cell identity is reliant on interplay between the Notch signaling pathway and retinoic acid (RA) signaling, where RA promotes MCC fate by inhibiting Notch activity in renal progenitors, while Notch acts downstream to trigger transportive cell formation and block adoption of an MCC identity. Previous research has shown that the transcription factor ets variant 5a (etv5a), and its closely related ETS family members, are required for ciliogenesis in other zebrafish tissues. Here, we mapped etv5a expression to renal progenitors that occupy domains where MCCs later emerge. Thus, we hypothesized that etv5a is required for normal development of MCCs in the nephron. etv5a loss of function caused a decline of MCC number as indicated by the reduced frequency of cells that expressed the MCC-specific markers outer dense fiber of sperm tails 3b (odf3b) and centrin 4 (cetn4), where rescue experiments partially restored MCC incidence. Interestingly, deficiency of ets variant 4 (etv4), a related gene that is broadly expressed in the posterior mesoderm during somitogenesis stages, also led to reduced MCC numbers, which were further reduced by dual etv5a/4 deficiency, suggesting that both of these ETS factors are essential for MCC formation and that they also might have redundant activities. In epistatic studies, exogenous RA treatment expanded the etv5a domain within the renal progenitor field and RA inhibition blocked etv5a in this populace, indicating that etv5a acts downstream of RA. Additionally, treatment with exogenous RA partially rescued the reduced MCC phenotype after loss of etv5a. Further, abrogation of Notch with the small molecule inhibitor DAPT increased the renal progenitor etv5a expression domain as well as MCC density in etv5a deficient embryos, suggesting Notch acts upstream to inhibit etv5a. In contrast, etv4 levels in renal progenitors were unaffected by changes in RA or Notch signaling levels, suggesting a possible non-cell autonomous role during pronephros formation. Taken together, these findings have revealed new insights about the genetic mechanisms of epithelial cell development during nephrogenesis.


Assuntos
Células Epiteliais/citologia , Rim/embriologia , Néfrons/embriologia , Pronefro/embriologia , Proteínas Proto-Oncogênicas c-ets/fisiologia , Fatores de Transcrição/fisiologia , Proteínas de Peixe-Zebra/fisiologia , Peixe-Zebra/embriologia , Laranja de Acridina/química , Animais , Diferenciação Celular , Linhagem da Célula , Regulação da Expressão Gênica no Desenvolvimento , Hibridização In Situ , Hibridização in Situ Fluorescente , Organogênese/genética , Receptores Notch/metabolismo , Transdução de Sinais , Tretinoína/metabolismo , Peixe-Zebra/fisiologia
8.
Dev Dyn ; 245(4): 472-82, 2016 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-26773453

RESUMO

BACKGROUND: Notch signaling in pronephros development has been shown to regulate establishment of glomus and proximal tubule, but how Notch signal works on competency of pronephric anlagen during the generation of pronephric components remains to be understood. RESULTS: We investigated how components of pronephros (glomus, proximal tubule, intermediate tubule, distal tubule, and connecting tubule) were generated in Xenopus embryos by timed overactivation and suppression of Notch signaling. Notch activation resulted in expansion of the glomus and disruption of the proximal tubule formation. Inhibition of Notch signaling reduced expression of wt1 and XSMP-30. In addition, when Notch signaling was overactivated at stage 20 on, intermediate, distal, and connecting tubule markers, gremlin and clcnkb, were decreased while Notch down-regulation increased gremlin and clcnkb. Similar changes were observed with segmental markers, cldn19, cldn14, and rhcg on activation or inhibition of Notch. Although Notch did not affect the expression of pan-pronephric progenitor marker, pax2, its activation inhibited lumen formation in the pronephros. CONCLUSIONS: Notch signal is essential for glomus and proximal tubule development and inhibition of Notch is critical for the differentiation of the intermediate, distal, and connecting tubule.


Assuntos
Diferenciação Celular/fisiologia , Embrião não Mamífero/embriologia , Túbulos Renais Proximais/embriologia , Pronefro/embriologia , Receptores Notch/metabolismo , Transdução de Sinais/fisiologia , Animais , Antígenos de Diferenciação/biossíntese , Embrião não Mamífero/citologia , Regulação da Expressão Gênica no Desenvolvimento/fisiologia , Túbulos Renais Proximais/citologia , Pronefro/citologia , Xenopus laevis
9.
Mech Dev ; 138 Pt 3: 328-35, 2015 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-26248207

RESUMO

The zebrafish pronephric tubule consists of proximal and distal segments and a collecting duct. The proximal segment is subdivided into the neck, proximal convoluted tubule (PCT) and proximal straight tubule (PST) segments. The distal segment consists of the distal-early (DE) and distal-late (DL) segments. How the proximal and distal segments develop along the anteroposterior axis is poorly understood. Here we show that knockdown of taz in zebrafish caused shortening and a significant reduction in the number of principal cells of the PST-DE segment, and proximalization of the pronephric tubule in 24 hpf embryos. RA treatment expanded the pronephric proximal domain in normal embryos as in taz morphants, an effect that was further enhanced upon exposure of taz morphants to RA. The early pronephric defects in 24 hpf taz morphants led to the failure of anterior pronephric tubule migration and convolution, and to PCT dilation and cyst formation in older embryos. In situ hybridization showed weak and transient expression of taz at the bud stage in the intermediate mesoderm, the source of pronephric progenitors. The present findings show that Taz is required in the anteroposterior patterning of the pronephric progenitor domain in the intermediate mesoderm, acting in part by regulating RA signaling in the pronephric progenitor field in the intermediate mesoderm.


Assuntos
Peptídeos e Proteínas de Sinalização Intracelular/fisiologia , Túbulos Renais/embriologia , Pronefro/embriologia , Proteínas de Peixe-Zebra/fisiologia , Peixe-Zebra/embriologia , Peixe-Zebra/fisiologia , Animais , Animais Geneticamente Modificados , Padronização Corporal/efeitos dos fármacos , Padronização Corporal/genética , Padronização Corporal/fisiologia , Contagem de Células , Regulação da Expressão Gênica no Desenvolvimento , Técnicas de Silenciamento de Genes , Peptídeos e Proteínas de Sinalização Intracelular/antagonistas & inibidores , Peptídeos e Proteínas de Sinalização Intracelular/genética , Túbulos Renais/citologia , Túbulos Renais/metabolismo , Mesoderma/citologia , Mesoderma/embriologia , Mesoderma/metabolismo , Pronefro/citologia , Pronefro/metabolismo , Proteínas com Motivo de Ligação a PDZ com Coativador Transcricional , Tretinoína/metabolismo , Tretinoína/farmacologia , Peixe-Zebra/genética , Proteínas de Peixe-Zebra/antagonistas & inibidores , Proteínas de Peixe-Zebra/genética
10.
In Vitro Cell Dev Biol Anim ; 51(10): 1023-32, 2015 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-26194803

RESUMO

von Hippel-Lindau (pVHL)-mediated ubiquitination of HIF-1α plays a central role in the cellular responses to changes in oxygen availability. In the present study, using zebrafish as a model, we showed that specific knockdown of endogenous vhl leads to pronephros malformation and renal failure. Knockdown of vhl resulted in abnormal kidney development, including curved and cystic pronephric tubule or/and cystic and atrophic glomerulus. Co-injecting capped vhl messenger RNA (mRNA) partially rescued pronephros morphant phenotype, confirming the specificity of the morpholino oligonucleotide (MO)-induced pronephric defects. In keeping with the pronephros phenotype, renal function was affected as well in vhl morphants. Dextran clearance abilities of vhl morphants were significantly reduced as compared with those of control embryos. Further analysis indicated that glomerular integrity is impaired in vhl morphants, while the organization of pronephric duct was minimally affected. Vhl morphants display global increased vegf signaling and angiogenesis. In addition, we found that vhl morphants displayed elevated expression of vegfa in podocytes and increased angiogenesis at pronephric glomerulus and the nearby vessels. Treatment of vegf inducer to embryos also caused pronephros phenotype resembling vhl morphants, further supporting that increased vegfa signaling contribute to the pronephros morphant phenotype. Our study establishes the zebrafish as an alternative vertebrate model system for studying Vhl function during kidney development.


Assuntos
Glomérulos Renais/embriologia , Organogênese/genética , Pronefro/embriologia , Fator A de Crescimento do Endotélio Vascular/metabolismo , Proteína Supressora de Tumor Von Hippel-Lindau/genética , Proteínas de Peixe-Zebra/metabolismo , Peixe-Zebra/embriologia , Animais , Dextranos/metabolismo , Técnicas de Silenciamento de Genes , Subunidade alfa do Fator 1 Induzível por Hipóxia/metabolismo , Modelos Animais , Morfolinos/genética , Neovascularização Fisiológica/genética , Podócitos/metabolismo , Policitemia/genética , Pronefro/anormalidades , RNA Mensageiro/genética , Transdução de Sinais/genética , Ubiquitinação , Peixe-Zebra/genética , Proteína da Zônula de Oclusão-1/metabolismo
11.
Dev Biol ; 396(2): 183-200, 2014 Dec 15.
Artigo em Inglês | MEDLINE | ID: mdl-25446529

RESUMO

The zebrafish pronephros provides an excellent in vivo system to study the mechanisms of vertebrate nephron development. When and how renal progenitors in the zebrafish embryo undergo tubulogenesis to form nephrons is poorly understood, but is known to involve a mesenchymal to epithelial transition (MET) and the acquisition of polarity. Here, we determined the precise timing of these events in pronephros tubulogenesis. As the ternary polarity complex is an essential regulator of epithelial cell polarity across tissues, we performed gene knockdown studies to assess the roles of the related factors atypical protein kinase C iota and zeta (prkcι, prkcζ). We found that prkcι and prkcζ serve partially redundant functions to establish pronephros tubule epithelium polarity. Further, the loss of prkcι or the combined knockdown of prkcι/ζ disrupted proximal tubule morphogenesis and podocyte migration due to cardiac defects that prevented normal fluid flow to the kidney. Surprisingly, tubule cells in prkcι/ζ morphants displayed ectopic expression of the transcription factor pax2a and the podocyte-associated genes wt1a, wt1b, and podxl, suggesting that prkcι/ζ are needed to maintain renal epithelial identity. Knockdown of genes essential for cardiac contractility and vascular flow to the kidney, such as tnnt2a, or elimination of pronephros fluid output through knockdown of the intraflagellar transport gene ift88, was not associated with ectopic pronephros gene expression, thus suggesting a unique role for prkcι/ζ in maintaining tubule epithelial identity separate from the consequence of disruptions to renal fluid flow. Interestingly, knockdown of pax2a, but not wt1a, was sufficient to rescue ectopic tubule gene expression in prkcι/ζ morphants. These data suggest a model in which the redundant activities of prkcι and prkcζ are essential to establish tubule epithelial polarity and also serve to maintain proper epithelial cell type identity in the tubule by inhibiting pax2a expression. These studies provide a valuable foundation for further analysis of MET during nephrogenesis, and have implications for understanding the pathways that affect nephron epithelial cells during kidney disease and regeneration.


Assuntos
Polaridade Celular/fisiologia , Regulação da Expressão Gênica no Desenvolvimento/fisiologia , Isoenzimas/metabolismo , Organogênese/fisiologia , Pronefro/embriologia , Proteína Quinase C/metabolismo , Peixe-Zebra/embriologia , Animais , Primers do DNA/genética , Dextranos/metabolismo , Células Epiteliais/metabolismo , Imunofluorescência , Regulação da Expressão Gênica no Desenvolvimento/genética , Hibridização In Situ , Microscopia Confocal , Fator de Transcrição PAX2/metabolismo , Proteínas de Peixe-Zebra/metabolismo
12.
J Cell Sci ; 127(Pt 7): 1476-86, 2014 Apr 01.
Artigo em Inglês | MEDLINE | ID: mdl-24496452

RESUMO

The conserved septin family of filamentous small GTPases plays important roles in mitosis, cell migration and cell morphogenesis by forming scaffolds and diffusion barriers. Recent studies in cultured cells in vitro indicate that a septin complex of septin 2, 7 and 9 is required for ciliogenesis and cilia function, but septin function in ciliogenesis in vertebrate organs in vivo is not understood. We show that sept7b is expressed in ciliated cells in different tissues during early zebrafish development. Knockdown of sept7b by using morpholino antisense oligonucleotides caused misorientation of basal bodies and cilia, reduction of apical actin and the shortening of motile cilia in Kupffer's vesicle and pronephric tubules. This resulted in pericardial and yolk sac edema, body axis curvature and hydrocephaly. Notably, in sept7b morphants we detected strong left-right asymmetry defects in the heart and lateral plate mesoderm (situs inversus), reduced fluid flow in the kidney, the formation of kidney cysts and loss of glomerular filtration barrier function. Thus, sept7b is essential during zebrafish development for pronephric function and ciliogenesis, and loss of expression of sept7b results in defects that resemble human ciliopathies.


Assuntos
Pronefro/embriologia , Pronefro/metabolismo , Septinas/metabolismo , Proteínas de Peixe-Zebra/metabolismo , Peixe-Zebra/embriologia , Animais , Animais Geneticamente Modificados , Encéfalo/embriologia , Encéfalo/metabolismo , Cílios/metabolismo , Desenvolvimento Embrionário , Técnicas de Silenciamento de Genes , Septinas/biossíntese , Septinas/deficiência , Septinas/genética , Proteínas de Peixe-Zebra/biossíntese
13.
Dev Biol ; 376(1): 31-42, 2013 Apr 01.
Artigo em Inglês | MEDLINE | ID: mdl-23352791

RESUMO

In the kidney, proximal tubules are very important for the reabsorption of water, ions and organic solutes from the primary urine. They are composed of highly specialized epithelial cells that are characterized by an elaborate apical brush border to increase transport efficiency. Using the pronephric kidney of Xenopus laevis we discovered that the G-protein modulator cholera toxin resulted in a dramatic reduction of the proximal tubular size. This phenotype was accompanied by changes in the cytoarchitecture characterized by ectopic expression of the distal tubular marker 4A6 and an impairment of yolk platelet degradation. In addition, cholera toxin caused edema formation. However, this phenotype was not due to kidney defects, but rather due to impaired vasculature development. Based on experiments with antisense morpholino oligomers as well as pharmacological agonists and antagonists, we could show that the complex phenotype of cholera toxin in the pronephric kidney was caused by the hyperactivation of a single G-protein alpha subunit, Gnas. This-in turn-caused elevated cAMP levels, triggered a Rapgef4-dependent signaling cassette and perturbed exo- and endocytosis. This perturbation of the secretory pathway by Ctx was not only observed in Xenopus embryos. Also, in a human proximal tubular cell line, cholera toxin or a Rapgef4-specific agonist increased uptake and decreased secretion of FITC-labeled Albumin. Based on these data we propose that the Gnas/cAMP/Rapgef4 pathway regulates the signals inducing the proliferation of proximal tubules to acquire their final organ size.


Assuntos
Subunidades alfa Gs de Proteínas de Ligação ao GTP/metabolismo , Proteínas de Ligação ao GTP/metabolismo , Túbulos Renais Proximais/embriologia , Pronefro/embriologia , Transdução de Sinais/fisiologia , Xenopus laevis/embriologia , Albuminas , Animais , Linhagem Celular , Toxina da Cólera/farmacologia , AMP Cíclico/metabolismo , Primers do DNA/genética , Fluoresceína-5-Isotiocianato , Fatores de Troca do Nucleotídeo Guanina/metabolismo , Técnicas Histológicas , Humanos , Imuno-Histoquímica , Hibridização In Situ , Túbulos Renais Proximais/efeitos dos fármacos , Túbulos Renais Proximais/metabolismo , Microscopia Eletrônica de Transmissão , Pronefro/metabolismo , Pronefro/ultraestrutura
14.
J Cell Sci ; 125(Pt 22): 5546-54, 2012 Nov 15.
Artigo em Inglês | MEDLINE | ID: mdl-22976307

RESUMO

Kidney function requires the appropriate distribution of membrane proteins between the apical and basolateral surfaces along the kidney tubule. Further, the absolute amount of a protein at the cell surface versus intracellular compartments must be attuned to specific physiological needs. Endolyn (CD164) is a transmembrane protein that is expressed at the brush border and in apical endosomes of the proximal convoluted tubule and in lysosomes of more distal segments of the kidney. Endolyn has been shown to regulate CXCR4 signaling in hematopoietic precursor cells and myoblasts; however, little is known about endolyn function in the adult or developing kidney. Here we identify endolyn as a gene important for zebrafish pronephric kidney function. Zebrafish endolyn lacks the N-terminal mucin-like domain of the mammalian protein, but is otherwise highly conserved. Using in situ hybridization we show that endolyn is expressed early during development in zebrafish brain, eye, gut and pronephric kidney. Embryos injected with a translation-inhibiting morpholino oligonucleotide targeted against endolyn developed pericardial edema, hydrocephaly and body curvature. The pronephric kidney appeared normal morphologically, but clearance of fluorescent dextran injected into the common cardinal vein was delayed, consistent with a defect in the regulation of water balance in morphant embryos. Heterologous expression of rat endolyn rescued the morphant phenotypes. Interestingly, rescue experiments using mutant rat endolyn constructs revealed that both apical sorting and endocytic/lysosomal targeting motifs are required for normal pronephric kidney function. This suggests that both polarized targeting and postendocytic trafficking of endolyn are essential for the protein's proper function in mammalian kidney.


Assuntos
Polaridade Celular , Endocitose , Endolina/metabolismo , Rim/embriologia , Rim/metabolismo , Pronefro/embriologia , Peixe-Zebra/embriologia , Envelhecimento/metabolismo , Animais , Polaridade Celular/efeitos dos fármacos , Embrião não Mamífero/efeitos dos fármacos , Embrião não Mamífero/metabolismo , Endocitose/efeitos dos fármacos , Endolina/química , Técnicas de Silenciamento de Genes , Rim/anatomia & histologia , Rim/citologia , Células Madin Darby de Rim Canino , Mamíferos/embriologia , Mamíferos/metabolismo , Morfolinos/farmacologia , Especificidade de Órgãos , Pronefro/metabolismo , Estrutura Terciária de Proteína , Ratos , Relação Estrutura-Atividade , Peixe-Zebra/metabolismo
15.
PLoS One ; 7(7): e39992, 2012.
Artigo em Inglês | MEDLINE | ID: mdl-22815719

RESUMO

Organ development leads to the emergence of organ function, which in turn can impact developmental processes. Here we show that fluid flow-induced collective epithelial migration during kidney nephron morphogenesis induces cell stretch that in turn signals epithelial proliferation. Increased cell proliferation was dependent on PI3K signaling. Inhibiting epithelial proliferation by blocking PI3K or CDK4/Cyclin D1 activity arrested cell migration prematurely and caused a marked overstretching of the distal nephron tubule. Computational modeling of the involved cell processes predicted major morphological and kinetic outcomes observed experimentally under a variety of conditions. Overall, our findings suggest that kidney development is a recursive process where emerging organ function "feeds back" to the developmental program to influence fundamental cellular events such as cell migration and proliferation, thus defining final organ morphology.


Assuntos
Células Epiteliais/citologia , Túbulos Renais/citologia , Fenômenos Mecânicos , Morfogênese , Fosfatidilinositol 3-Quinases/metabolismo , Pronefro/embriologia , Peixe-Zebra/embriologia , Animais , Fenômenos Biomecânicos , Movimento Celular , Proliferação de Células , Túbulos Renais/embriologia , Modelos Biológicos , Pronefro/citologia , Transdução de Sinais
16.
Development ; 139(2): 301-11, 2012 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-22129829

RESUMO

Vertebrate odd-skipped related genes (Osr) have an essential function during the formation of the intermediate mesoderm (IM) and the kidney structures derived from it. Here, we show that these genes are also crucial for limb bud formation in the adjacent lateral plate mesoderm (LPM). Reduction of zebrafish Osr function impairs fin development by the failure of tbx5a maintenance in the developing pectoral fin bud. Osr morphant embryos show reduced wnt2b expression, and increasing Wnt signaling in Osr morphant embryos partially rescues tbx5a expression. Thus, Osr genes control limb bud development in a non-cell-autonomous manner, probably through the activation of Wnt2b. Finally, we demonstrate that Osr genes are downstream targets of retinoic acid (RA) signaling. Therefore, Osr genes act as a relay within the genetic cascade of fin bud formation: by controlling the expression of the signaling molecule Wnt2ba in the IM they play an essential function transmitting the RA signaling originated in the somites to the LPM.


Assuntos
Nadadeiras de Animais/embriologia , Botões de Extremidades/embriologia , Mesoderma/embriologia , Transdução de Sinais/fisiologia , Fatores de Transcrição/metabolismo , Proteínas de Peixe-Zebra/metabolismo , Peixe-Zebra/embriologia , Animais , Primers do DNA/genética , Dimetil Sulfóxido , Membro Anterior/embriologia , Hibridização In Situ , Pronefro/embriologia , Reação em Cadeia da Polimerase em Tempo Real , Proteínas com Domínio T/metabolismo , Tretinoína/metabolismo , Proteína Wnt2/metabolismo , p-Aminoazobenzeno/análogos & derivados
17.
J Vis Exp ; (54)2011 Aug 29.
Artigo em Inglês | MEDLINE | ID: mdl-21897358

RESUMO

Acute kidney injury (AKI) is characterized by high mortality rates from deterioration of renal function over a period of hours or days that culminates in renal failure. AKI can be caused by a number of factors including ischemia, drug-based toxicity, or obstructive injury. This results in an inability to maintain fluid and electrolyte homeostasis. While AKI has been observed for decades, effective clinical therapies have yet to be developed. Intriguingly, some patients with AKI recover renal functions over time, a mysterious phenomenon that has been only rudimentally characterized. Research using mammalian models of AKI has shown that ischemic or nephrotoxin-injured kidneys experience epithelial cell death in nephron tubules, the functional units of the kidney that are made up of a series of specialized regions (segments) of epithelial cell types. Within nephrons, epithelial cell death is highest in proximal tubule cells. There is evidence that suggests cell destruction is followed by dedifferentiation, proliferation, and migration of surrounding epithelial cells, which can regenerate the nephron entirely. However, there are many unanswered questions about the mechanisms of renal epithelial regeneration, ranging from the signals that modulate these events to reasons for the wide variation of abilities among humans to regenerate injured kidneys. The larval zebrafish provides an excellent model to study kidney epithelial regeneration as its pronephric kidney is comprised of nephrons that are conserved with higher vertebrates including mammals. The nephrons of zebrafish larvae can be visualized with fluorescence techniques because of the relative transparency of the young zebrafish. This provides a unique opportunity to image cell and molecular changes in real-time, in contrast to mammalian models where nephrons are inaccessible because the kidneys are structurally complex systems internalized within the animal. Recent studies have employed the aminoglycoside gentamicin as a toxic causative agent for study of AKI and subsequent renal failure: gentamicin and other antibiotics have been shown to cause AKI in humans, and researchers have formulated methods to use this agent to trigger kidney damage in zebrafish. However, the effects of aminoglycoside toxicity in zebrafish larvae are catastrophic and lethal, which presents a difficulty when studying epithelial regeneration and function over time. Our method presents the use of targeted cell ablation as a novel tool for the study of epithelial injury in zebrafish. Laser ablation gives researchers the ability to induce cell death in a limited population of cells. Varying areas of cells can be targeted based on morphological location, function, or even expression of a particular cellular phenotype. Thus, laser ablation will increase the specificity of what researchers can study, and can be a powerful new approach to shed light on the mechanisms of renal epithelial regeneration. This protocol can be broadly applied to target cell populations in other organs in the zebrafish embryo to study injury and regeneration in any number of contexts of interest.


Assuntos
Rim/fisiologia , Terapia a Laser/métodos , Pronefro/fisiologia , Regeneração/fisiologia , Animais , Epitélio/embriologia , Epitélio/fisiologia , Rim/embriologia , Rim/cirurgia , Pronefro/embriologia , Pronefro/cirurgia , Peixe-Zebra
18.
Pediatr Nephrol ; 26(9): 1545-51, 2011 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-21499947

RESUMO

Kidney development is a multi-step process where undifferentiated mesenchyme is converted into a highly complex organ through several inductive events. The general principles regulating these events have been under intense investigation and despite extensive progress, many open questions remain. While the metanephric kidneys of mouse and rat have served as the primary model, other organisms also significantly contribute to the field. In particular, the more primitive pronephric kidney has emerged as an alternative model due to its simplicity and experimental accessibility. Many aspects of nephron development such as the patterning along its proximo-distal axis are evolutionarily conserved and are therefore directly applicable to higher vertebrates. This review will focus on the current understanding of pronephros development in Xenopus. It summarizes how signaling, transcriptional regulation, as well as post-transcriptional mechanisms contribute to the differentiation of renal epithelial cells. The data show that even in the simple pronephros the mechanisms regulating kidney organogenesis are highly complex. It also illustrates that a multifaceted analysis embracing modern genome-wide approaches combined with single gene analysis will be required to fully understand all the intricacies.


Assuntos
Biologia do Desenvolvimento , Células Epiteliais/fisiologia , Pronefro/embriologia , Xenopus/embriologia , Animais , Biologia do Desenvolvimento/história , Biologia do Desenvolvimento/tendências , Células Epiteliais/metabolismo , Regulação da Expressão Gênica no Desenvolvimento , História do Século XX , História do Século XXI , Organogênese , Pronefro/metabolismo , Transdução de Sinais , Xenopus/genética , Xenopus/metabolismo
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