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1.
Cell Mol Life Sci ; 79(12): 595, 2022 Nov 17.
Artigo em Inglês | MEDLINE | ID: mdl-36394649

RESUMO

Fibrosis is a relentlessly progressive and irreversible cause of organ damage, as in chronic kidney disease (CKD), but its underlying mechanisms remain elusive. We found that a circular RNA, circPTPN14, is highly expressed in human kidneys with biopsy-proved chronic interstitial fibrosis, mouse kidneys subjected to ischemia/reperfusion (IR) or unilateral ureteral obstruction (UUO), and TGFß1-stimulated renal tubule epithelial cells (TECs). The intrarenal injection of circPTPN14 shRNA alleviated the progression of fibrosis in kidneys subjected to IR or UUO. Knockdown of circPTPN14 in TECs inhibited TGFß1-induced expression of profibrotic genes, whereas overexpressing circPTPN14 increased the profibrotic effect of TGFß1. The profibrotic action of circPTPN14 was ascribed to an increase in MYC transcription. The binding of circPTPN14 to the KH3 and KH4 domains of far upstream element (FUSE) binding protein 1 (FUBP1) enhanced the interaction between FUBP1 and FUSE domain, which was required for the initiation of MYC transcription. In human kidneys (n = 30) with biopsy-proved chronic interstitial fibrosis, the expression of circPTPN14 positively correlated with MYC expression. Taken together these studies show a novel mechanism in the pathogenesis of renal fibrosis, mediated by circPTPN14, which can be a target in the diagnosis and treatment of CKD.


Assuntos
Insuficiência Renal Crônica , Obstrução Ureteral , Animais , Humanos , Camundongos , Proteínas de Ligação a DNA/genética , Proteínas de Ligação a DNA/metabolismo , Fibrose , Rim/metabolismo , Proteínas Proto-Oncogênicas c-myc , Insuficiência Renal Crônica/patologia , RNA Circular/genética , Proteínas de Ligação a RNA/genética , Proteínas de Ligação a RNA/metabolismo , Obstrução Ureteral/genética , Obstrução Ureteral/metabolismo , Obstrução Ureteral/patologia , Transcrição Gênica
2.
Dev Cell ; 57(20): 2365-2380.e8, 2022 10 24.
Artigo em Inglês | MEDLINE | ID: mdl-36243012

RESUMO

Gasdermin D (GSDMD)-mediated pyroptosis induces immunogenic cell death and promotes inflammation. However, the functions of GSDMD in tissue homeostasis remain unclear. Here, we identify a physiological function of GSDMD in osteoclasts via a non-lytic p20-generated protein, which prevents bone loss to maintain bone homeostasis. In the late stage of RANKL-induced osteoclastogenesis, GSDMD underwent cleavage, which is dependent on RIPK1 and caspase-8/-3, to yield this p20 product. Gsdmd-deficient osteoclasts showed normal differentiation but enhanced bone resorption with excessive lysosomal activity. Mice with complete or myeloid-specific Gsdmd deletion exhibited increased trabecular bone loss and more severe aging/ovariectomy-induced osteoporosis. GSDMD p20 was preferentially localized to early endosomes and limited endo-lysosomal trafficking and maturation, relying on its oligomerization and control of phosphoinositide conversion by binding to phosphatidylinositol 3-phosphate (PI(3)P). We have thus identified an anti-osteoclastic function of GSDMD as a checkpoint for lysosomal maturation and secretion and linked this to bone homeostasis and endosome-lysosome biology.


Assuntos
Reabsorção Óssea , Peptídeos e Proteínas de Sinalização Intracelular , Animais , Feminino , Camundongos , Caspase 8/metabolismo , Peptídeos e Proteínas de Sinalização Intracelular/metabolismo , Lisossomos/metabolismo , Camundongos Endogâmicos C57BL , Proteínas de Ligação a Fosfato/metabolismo , Fosfatos de Fosfatidilinositol
3.
FASEB J ; 36(6): e22342, 2022 06.
Artigo em Inglês | MEDLINE | ID: mdl-35524750

RESUMO

Renal fibrosis is the final common outcome of chronic kidney disease (CKD), which remains a huge challenge due to a lack of targeted treatment. Growing evidence suggests that during the process of CKD, the integrity and function of mitochondria in renal tubular epithelial cells (TECs) are generally impaired and strongly connected with the progression of renal fibrosis. Mitophagy, a selective form of autophagy, could remove aberrant mitochondria to maintain mitochondrial homeostasis. Deficiency of mitophagy has been reported to aggravate renal fibrosis. However, whether induction of mitophagy could alleviate renal fibrosis has not been stated. In this study, we explored the effect of mitophagy activation by UMI-77, a compound recently verified to induce mitophagy, on murine CKD model of unilateral ureteral obstruction (UUO) in vivo and TECs in vitro. In UUO mice, we found the changes of mitochondrial damage, ROS production, transforming growth factor (TGF)-ß1/Smad pathway activation, as well as epithelial-mesenchymal transition phenotype and renal fibrosis, and these changes were ameliorated by mitophagy enhancement using UMI-77. Moreover, TEC apoptosis, nuclear factor (NF)-κB signaling activation, and interstitial inflammation after UUO were significantly mitigated by augmented mitophagy. Then, we found UMI-77 could effectively and safely induce mitophagy in TECs in vitro, and reduced TGF-ß1/Smad signaling and downstream profibrotic responses in TGF-ß1-treated TECs. These changes were restored by a mitophagy inhibitor. In conclusion, we demonstrated that mitophagy activation protected against renal fibrosis through improving mitochondrial fitness, downregulating TGF-ß1/Smad signaling and alleviating TEC injuries and inflammatory infiltration in kidneys.


Assuntos
Insuficiência Renal Crônica , Animais , Células Epiteliais/metabolismo , Fibrose , Rim/metabolismo , Camundongos , Mitocôndrias/metabolismo , Mitofagia , NF-kappa B/metabolismo , Insuficiência Renal Crônica/metabolismo , Sulfonamidas , Tioglicolatos , Fator de Crescimento Transformador beta1/metabolismo , Obstrução Ureteral/metabolismo
4.
Front Immunol ; 13: 805420, 2022.
Artigo em Inglês | MEDLINE | ID: mdl-35359928

RESUMO

The interstitium of kidney involves a variety of components including resident immune cells, in particular mononuclear phagocytes. However, many proposed markers for distinguishing macrophages or dendritic cells are, in fact, shared by the majority of renal mononuclear phagocytes, which impedes the research of kidney diseases. Here, by employing a flow cytometry strategy and techniques of fate mapping, imaging and lineage depletion, we were able to demarcate renal monocytes, macrophages and dendritic cells and their subsets in mice. In particular, using this strategy, we found that even in steady state, the renal macrophage pool was continuously replenished by bone marrow-derived monocytes in a stepwise process, i.e., from infiltration of classical monocyte, to development of nonclassical monocyte and eventually to differentiation to macrophages. In mechanism, we demonstrated that the ligation of tissue-anchored CX3CL1 and monocytic CX3CR1 was required for promoting monocyte differentiation to macrophages in the kidney, but CX3CL1-CX3CR1 signaling was dispensable in monocyte infiltrating into the kidney. In addition to the bone marrow-derived macrophages, fate mapping in adult mice revealed another population of renal resident macrophages which were embryo-derived and self-maintaining. Thus, the dissecting strategies developed by us would assist in exploration of the biology of renal mononuclear phagocytes.


Assuntos
Macrófagos , Monócitos , Animais , Citometria de Fluxo , Rim , Contagem de Leucócitos , Camundongos
5.
FASEB J ; 36(3): e22227, 2022 03.
Artigo em Inglês | MEDLINE | ID: mdl-35195918

RESUMO

Increased serum mannose-binding lectin (MBL) level has been proven to correlate with the development of diabetic nephropathy (DN). Here, we aim to find the role and mechanism of MBL involved in the progression of DN. Patients with DN were recruited and divided into two groups according to different rs1800450 genotypes of the MBL2 gene, and inflammatory profiles in monocytes/macrophages were compared between the two groups. MBL was given to treat macrophages, HK2, and HMC, and a co-culture transwell system was then employed. Renal inflammation and fibrosis parameters were measured after knocking down or overexpressing MBL genes in mice. Proinflammatory profile, manifesting as enhanced IL-1ß production and M1 polarization, was found in monocytes/macrophages from DN with a rs1800450 GG genotype of MBL2 gene who had higher MBL level, compared with those with a rs1800450 GA genotype. In mechanism, MBL directly induced inflammatory responses in macrophages, which promoted inflammatory and fibrotic markers in HK2 and HMCs during co-culture. Further experiments showed that MBL can promote macrophages transforming to the M1 subset mainly by activating the nuclear factor-κB pathway. After downregulation of MBL, the blood glucose, triglyceride, urine protein, injuries of glomerulus and tubules, and the degree of renal inflammation and fibrosis were ameliorated in db/db mice treated with AAV-MBL1/2-shRNA. Overexpression of MBL promoted macrophage infiltration in the kidney. In conclusion, MBL is a crucial mediator in the progression of DN via activating the nuclear factor-κB pathway in macrophages. This will serve as a genetic base for some patients with DN who have poor outcomes and provide a direction for the screening.


Assuntos
Nefropatias Diabéticas/metabolismo , Lectina de Ligação a Manose/metabolismo , NF-kappa B/metabolismo , Animais , Linhagem Celular Tumoral , Células Cultivadas , Nefropatias Diabéticas/genética , Nefropatias Diabéticas/patologia , Feminino , Células HEK293 , Humanos , Inflamação , Interleucina-1beta/metabolismo , Rim/metabolismo , Rim/patologia , Macrófagos/metabolismo , Masculino , Lectina de Ligação a Manose/genética , Camundongos , Mutação
6.
Ann Transl Med ; 8(21): 1399, 2020 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-33313144

RESUMO

BACKGROUND: We aimed to investigate whether mannose-binding lectin (MBL) activation contributed to the progression of diabetic nephropathy (DN), and its role in predicting the renal prognosis of DN. METHODS: Seventy-seven patients who received renal biopsy in the First Affiliated Hospital, College of Medicine, Zhejiang University between August 2013 and September 2016 were enrolled in the study. These patients were followed up until the endpoint of end-stage renal disease (ESRD) or the last follow-up time of August 31, 2018. They were divided into ESRD group (33 patients) and non-ESRD group (44 patients). Their baseline characteristics and MBL levels (serum and urine) were compared between groups. The correlation between single nucleotide polymorphisms (SNPs) of the MBL2 gene and renal outcomes was also analyzed. RESULTS: The median (interquartile ranges) of serum and urine MBL levels were significantly higher in ESRD group than those in non-ESRD group [2,783.75 (1,244.28, 3,837.07) vs. 1,141.60 (652.67, 3,188.44) ng/mL, P=0.016; 1.02 (0.43, 2.05) vs. 0.27 (0.04, 0.58) ng/mg, P<0.01, respectively]. Both univariate and multivariate Cox analysis showed that serum MBL >1,108.75 ng/mL (stratified by maximum Youden index) was an independent predictor for ESRD [hazard ratio (HR) =4.164, 95% confidence interval (CI): 1.601-10.833, P=0.003; HR =4.644, 95% CI: 1.320-16.337, P=0.017; respectively]. For the patients with rs1800450 SNPs of MBL2 gene, patients with homozygous genotype (GG) had higher serum MBL level (median 2,963.52 ng/mL) compared with those with heterozygous genotype (GA) (median 665.38 ng/mL) (P<0.001). MBL2 rs1800450 GA genotype was an independent protective factor for ESRD with a HR of 0.485 (95% CI: 0.237-0.991; P=0.047). CONCLUSIONS: Activation of MBL contributed to the progression of DN. The rs1800450 SNP of the MBL2 gene may be of value in predicting the progression to ESRD in DN patients.

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