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1.
Int J Mol Sci ; 22(15)2021 Jul 28.
Article de Anglais | MEDLINE | ID: mdl-34360869

RÉSUMÉ

The scaffold protein Tks4 is a member of the p47phox-related organizer superfamily. It plays a key role in cell motility by being essential for the formation of podosomes and invadopodia. In addition, Tks4 is involved in the epidermal growth factor (EGF) signaling pathway, in which EGF induces the translocation of Tks4 from the cytoplasm to the plasma membrane. The evolutionarily-related protein p47phox and Tks4 share many similarities in their N-terminal region: a phosphoinositide-binding PX domain is followed by two SH3 domains (so called "tandem SH3") and a proline-rich region (PRR). In p47phox, the PRR is followed by a relatively short, disordered C-terminal tail region containing multiple phosphorylation sites. These play a key role in the regulation of the protein. In Tks4, the PRR is followed by a third and a fourth SH3 domain connected by a long (~420 residues) unstructured region. In p47phox, the tandem SH3 domain binds the PRR while the first SH3 domain interacts with the PX domain, thereby preventing its binding to the membrane. Based on the conserved structural features of p47phox and Tks4 and the fact that an intramolecular interaction between the third SH3 and the PX domains of Tks4 has already been reported, we hypothesized that Tks4 is similarly regulated by autoinhibition. In this study, we showed, via fluorescence-based titrations, MST, ITC, and SAXS measurements, that the tandem SH3 domain of Tks4 binds the PRR and that the PX domain interacts with the third SH3 domain. We also investigated a phosphomimicking Thr-to-Glu point mutation in the PRR as a possible regulator of intramolecular interactions. Phosphatidylinositol-3-phosphate (PtdIns(3)P) was identified as the main binding partner of the PX domain via lipid-binding assays. In truncated Tks4 fragments, the presence of the tandem SH3, together with the PRR, reduced PtdIns(3)P binding, while the presence of the third SH3 domain led to complete inhibition.


Sujet(s)
Protéines adaptatrices de la transduction du signal , Phosphates phosphatidylinositol/métabolisme , Protéines adaptatrices de la transduction du signal/composition chimique , Protéines adaptatrices de la transduction du signal/métabolisme , Sites de fixation , Humains , Modèles moléculaires , Domaines de protéine riches en proline , Liaison aux protéines , Domaine d'homologie SRC
2.
J Med Chem ; 64(6): 2982-3005, 2021 03 25.
Article de Anglais | MEDLINE | ID: mdl-33719423

RÉSUMÉ

Most therapeutic agents used for treating brain malignancies face hindered transport through the blood-brain barrier (BBB) and poor tissue penetration. To overcome these problems, we developed peptide conjugates of conventional and experimental anticancer agents. SynB3 cell-penetrating peptide derivatives were applied that can cross the BBB. Tuftsin derivatives were used to target the neuropilin-1 transport system for selectivity and better tumor penetration. Moreover, SynB3-tuftsin tandem compounds were synthesized to combine the beneficial properties of these peptides. Most of the conjugates showed high and selective efficacy against glioblastoma cells. SynB3 and tandem derivatives demonstrated superior cellular internalization. The penetration profile of the conjugates was determined on a lipid monolayer and Transwell co-culture system with noncontact HUVEC-U87 monolayers as simple ex vivo and in vitro BBB models. Importantly, in 3D spheroids, daunomycin-peptide conjugates possessed a better tumor penetration ability than daunomycin. These conjugates are promising tools for the delivery systems with tunable features.


Sujet(s)
Antinéoplasiques/pharmacocinétique , Barrière hémato-encéphalique/métabolisme , Tumeurs du cerveau/traitement médicamenteux , Peptides de pénétration cellulaire/pharmacocinétique , Glioblastome/traitement médicamenteux , Oligopeptides/pharmacocinétique , Tuftsine/pharmacocinétique , Animaux , Antinéoplasiques/composition chimique , Antinéoplasiques/pharmacologie , Tumeurs du cerveau/métabolisme , Lignée cellulaire tumorale , Peptides de pénétration cellulaire/composition chimique , Peptides de pénétration cellulaire/pharmacologie , Vecteurs de médicaments/composition chimique , Vecteurs de médicaments/pharmacocinétique , Vecteurs de médicaments/pharmacologie , Systèmes de délivrance de médicaments , Glioblastome/métabolisme , Cellules endothéliales de la veine ombilicale humaine , Humains , Neuropiline 1/métabolisme , Oligopeptides/composition chimique , Oligopeptides/pharmacologie , Rats , Sphéroïdes de cellules/effets des médicaments et des substances chimiques , Sphéroïdes de cellules/métabolisme , Tuftsine/analogues et dérivés , Tuftsine/pharmacologie , Cellules cancéreuses en culture
3.
ACS Pharmacol Transl Sci ; 4(1): 155-167, 2021 Feb 12.
Article de Anglais | MEDLINE | ID: mdl-33615169

RÉSUMÉ

The host defense peptide LL-37 is the only human cathelicidin, characterized by pleiotropic activity ranging from immunological to anti-neoplastic functions. However, its overexpression has been associated with harmful inflammatory responses and apoptosis. Thus, for the latter cases, the development of strategies aiming to reduce LL-37 toxicity is highly desired as these have the potential to provide a viable solution. Here, we demonstrate that the reduction of LL-37 toxicity might be achieved by the impairment of its cell surface binding through interaction with small organic compounds that are able to alter the peptide conformation and minimize its cell penetration ability. In this regard, the performed cell viability and internalization studies showed a remarkable attenuation of LL-37 cytotoxicity toward colon and monocytic cells in the presence of the polysulfonated drug suramin. The mechanistic examinations of the molecular details indicated that this effect was coupled with the ability of suramin to alter LL-37 secondary structure via the formation of peptide-drug complexes. Moreover, a comparison with other therapeutic agents having common features unveiled the peculiar ability of suramin to optimize the binding to the peptide sequence. The newly discovered suramin action is hoped to inspire the elaboration of novel repurposing strategies aimed to reduce LL-37 cytotoxicity under pathological conditions.

4.
Sci Rep ; 10(1): 20114, 2020 11 18.
Article de Anglais | MEDLINE | ID: mdl-33208866

RÉSUMÉ

Malignant pleural mesothelioma (MPM) has an overall poor prognosis and unsatisfactory treatment options. MPM nodules, protruding into the pleural cavity may have growth and spreading dynamics distinct that of other solid tumors. We demonstrate that multicellular aggregates can develop spontaneously in the majority of tested MPM cell lines when cultured at high cell density. Surprisingly, the nodule-like aggregates do not arise by excessive local cell proliferation, but by myosin II-driven cell contractility. Prominent actin cables, spanning several cells, are abundant both in cultured aggregates and in MPM surgical specimens. We propose a computational model for in vitro MPM nodule development. Such a self-tensioned Maxwell fluid exhibits a pattern-forming instability that was studied by analytical tools and computer simulations. Altogether, our findings may underline a rational for targeting the actomyosin system in MPM.


Sujet(s)
Mésothéliome malin/anatomopathologie , Actines/métabolisme , Amides/pharmacologie , Animaux , Numération cellulaire , Lignée cellulaire tumorale , Composés hétérocycliques avec 4 noyaux ou plus/pharmacologie , Humains , Mâle , Mésothéliome malin/métabolisme , Souris SCID , Myosines/métabolisme , Pyridines/pharmacologie , Processus stochastiques , Imagerie accélérée , Tests d'activité antitumorale sur modèle de xénogreffe
5.
Int J Mol Sci ; 21(21)2020 Oct 30.
Article de Anglais | MEDLINE | ID: mdl-33143131

RÉSUMÉ

Scaffold proteins are typically thought of as multi-domain "bridging molecules." They serve as crucial regulators of key signaling events by simultaneously binding multiple participants involved in specific signaling pathways. In the case of epidermal growth factor (EGF)-epidermal growth factor receptor (EGFR) binding, the activated EGFR contacts cytosolic SRC tyrosine-kinase, which then becomes activated. This process leads to the phosphorylation of SRC-substrates, including the tyrosine kinase substrates (TKS) scaffold proteins. The TKS proteins serve as a platform for the recruitment of key players in EGFR signal transduction, promoting cell spreading and migration. The TKS4 and the TKS5 scaffold proteins are tyrosine kinase substrates with four or five SH3 domains, respectively. Their structural features allow them to recruit and bind a variety of signaling proteins and to anchor them to the cytoplasmic surface of the cell membrane. Until recently, TKS4 and TKS5 had been recognized for their involvement in cellular motility, reactive oxygen species-dependent processes, and embryonic development, among others. However, a number of novel functions have been discovered for these molecules in recent years. In this review, we attempt to cover the diverse nature of the TKS molecules by discussing their structure, regulation by SRC kinase, relevant signaling pathways, and interaction partners, as well as their involvement in cellular processes, including migration, invasion, differentiation, and adipose tissue and bone homeostasis. We also describe related pathologies and the established mouse models.


Sujet(s)
Protéines adaptatrices de la transduction du signal/métabolisme , Protéines adaptatrices du transport vésiculaire/métabolisme , Différenciation cellulaire , Mouvement cellulaire , Homéostasie , Podosomes/physiologie , Humains , Transduction du signal
6.
Cancer Metastasis Rev ; 39(4): 1051-1065, 2020 12.
Article de Anglais | MEDLINE | ID: mdl-32648136

RÉSUMÉ

The genetic alterations in cancer cells are tightly linked to signaling pathway dysregulation. Ras is a key molecule that controls several tumorigenesis-related processes, and mutations in RAS genes often lead to unbiased intensification of signaling networks that fuel cancer progression. In this article, we review recent studies that describe mutant Ras-regulated signaling routes and their cross-talk. In addition to the two main Ras-driven signaling pathways, i.e., the RAF/MEK/ERK and PI3K/AKT/mTOR pathways, we have also collected emerging data showing the importance of Ras in other signaling pathways, including the RAC/PAK, RalGDS/Ral, and PKC/PLC signaling pathways. Moreover, microRNA-regulated Ras-associated signaling pathways are also discussed to highlight the importance of Ras regulation in cancer. Finally, emerging data show that the signal alterations in specific cell types, such as cancer stem cells, could promote cancer development. Therefore, we also cover the up-to-date findings related to Ras-regulated signal transduction in cancer stem cells.


Sujet(s)
Mutation , Tumeurs/génétique , Tumeurs/métabolisme , Protéines proto-oncogènes p21(ras)/génétique , Protéines proto-oncogènes p21(ras)/métabolisme , Animaux , Humains , Transduction du signal/génétique
7.
Biomolecules ; 10(5)2020 05 06.
Article de Anglais | MEDLINE | ID: mdl-32384673

RÉSUMÉ

Regions of the Herpes simplex virus-1 (HSV-1) glycoprotein D (gD) were chosen to design carrier peptides based on the known tertiary structure of the virus entry receptor complexes. These complexes consist of the following: HSV-1 gD-nectin-1 and HSV-1 gD-herpesvirus entry mediator (HVEM). Three sets of peptides were synthesised with sequences covering the (i) N-terminal HVEM- and nectin-1 binding region -5-42, (ii) the 181-216 medium region containing nectin-1 binding sequences and (iii) the C-terminal nectin-1 binding region 214-255. The carrier candidates were prepared with acetylated and 5(6)-carboxyfluorescein labelled N-termini. The peptides were chemically characterised and their conformational features in solution were also determined. In vitro internalisation profile and intracellular localisation were evaluated on SH-SY5Y neuroblastoma cells. Peptide originated from the C-terminal region 224-247 of the HSV-1 gD showed remarkable internalisation compared to the other peptides with low to moderate entry. Electronic circular dichroism secondary structure studies of the peptides revealed that the most effectively internalised peptides exhibit high helical propensity at increasing TFE concentrations. We proved that oligopeptides derived from the nectin-1 binding region are promising candidates-with possibility of Lys237Arg and/or Trp241Phe substitutions-for side-reaction free conjugation of bioactive compounds-drugs or gene therapy agents-as cargos.


Sujet(s)
Ingénierie des protéines/méthodes , Protéines de l'enveloppe virale/composition chimique , Sites de fixation , Lignée cellulaire tumorale , Humains , Nectines/composition chimique , Nectines/génétique , Nectines/métabolisme , Transport des protéines , Protéines de l'enveloppe virale/génétique , Protéines de l'enveloppe virale/métabolisme
8.
Int J Mol Sci ; 21(6)2020 Mar 22.
Article de Anglais | MEDLINE | ID: mdl-32235796

RÉSUMÉ

Cell-penetrating peptides might have great potential for enhancing the therapeutic effect of drug molecules against such dangerous pathogens as Mycobacterium tuberculosis (Mtb), which causes a major health problem worldwide. A set of cationic cell-penetration peptides with various hydrophobicity were selected and synthesized as drug carrier of isoniazid (INH), a first-line antibacterial agent against tuberculosis. Molecular interactions between the peptides and their INH-conjugates with cell-membrane-forming lipid layers composed of DPPC and mycolic acid (a characteristic component of Mtb cell wall) were evaluated, using the Langmuir balance technique. Secondary structure of the INH conjugates was analyzed and compared to that of the native peptides by circular dichroism spectroscopic experiments performed in aqueous and membrane mimetic environment. A correlation was found between the conjugation induced conformational and membrane affinity changes of the INH-peptide conjugates. The degree and mode of interaction were also characterized by AFM imaging of penetrated lipid layers. In vitro biological evaluation was performed with Penetratin and Transportan conjugates. Results showed similar internalization rate into EBC-1 human squamous cell carcinoma, but markedly different subcellular localization and activity on intracellular Mtb.


Sujet(s)
Antituberculeux/administration et posologie , Peptides de pénétration cellulaire/métabolisme , Vecteurs de médicaments/métabolisme , Isoniazide/administration et posologie , Lipides membranaires/métabolisme , Séquence d'acides aminés , Antituberculeux/composition chimique , Antituberculeux/pharmacocinétique , Lignée cellulaire tumorale , Peptides de pénétration cellulaire/composition chimique , Vecteurs de médicaments/composition chimique , Humains , Isoniazide/composition chimique , Isoniazide/pharmacocinétique , Double couche lipidique/métabolisme , Mycobacterium tuberculosis/effets des médicaments et des substances chimiques , Tuberculose/traitement médicamenteux
9.
Int J Mol Sci ; 21(4)2020 Feb 11.
Article de Anglais | MEDLINE | ID: mdl-32053991

RÉSUMÉ

Breast cancer is the most commonly occurring cancer in women and the second most common cancer overall. By the age of 80, the estimated risk for breast cancer for women with germline BRCA1 or BRCA2 mutations is around 80%. Genetically engineered BRCA1-deficient mouse models offer a unique opportunity to study the pathogenesis and therapy of triple negative breast cancer. Here we present a newly established Brca1-/-, p53-/- mouse mammary tumor cell line, designated as CST. CST shows prominent features of BRCA1-mutated triple-negative breast cancers including increased motility, high proliferation rate, genome instability and sensitivity to platinum chemotherapy and PARP inhibitors (olaparib, veliparib, rucaparib and talazoparib). Genomic instability of CST cells was confirmed by whole genome sequencing, which also revealed the presence of COSMIC (Catalogue of Somatic Mutations in Cancer) mutation signatures 3 and 8 associated with homologous recombination (HR) deficiency. In vitro sensitivity of CST cells was tested against 11 chemotherapy agents. Tumors derived from orthotopically injected CST-mCherry cells in FVB-GFP mice showed sensitivity to cisplatin, providing a new model to study the cooperation of BRCA1-KO, mCherry-positive tumor cells and the GFP-expressing stromal compartment in therapy resistance and metastasis formation. In summary, we have established CST cells as a new model recapitulating major characteristics of BRCA1-negative breast cancers.


Sujet(s)
Protéine BRCA1/génétique , Tumeurs mammaires de l'animal/génétique , Tumeurs du sein triple-négatives/génétique , Protéine p53 suppresseur de tumeur/génétique , Animaux , Lignée cellulaire tumorale , Prolifération cellulaire , Femelle , Délétion de gène , Instabilité du génome , Tumeurs mammaires de l'animal/anatomopathologie , Souris , Tumeurs du sein triple-négatives/anatomopathologie
10.
Biomolecules ; 10(2)2020 01 25.
Article de Anglais | MEDLINE | ID: mdl-31991749

RÉSUMÉ

Human epidermal growth factor (HER2) is a transmembrane tyrosine kinase receptor that is frequently overexpressed in breast cancer. Its increased level prognoses a poor patient outcome and a high mortality rate. Despite the widening spectrum of therapies that are becoming available to treat HER2+ breast cancer, its side effects and resistance still make this protein a valuable object of research in targeted tumor therapy. The role of tumor-targeting peptides has become more and more prominent in the last few decades due to their simple synthesis and pharmakokinetic properties. Here, we examine two fluorescently-labeled HER2-specific peptides and their combined analogues that are developed to target the extracellular region of HER2. The peptides are investigated on breast cancer cell lines with different HER2 expression profiles. Moreover, their extracellular localization and specificity are confirmed by flow cytometry and confocal microscopy. Therefore, a new, combined HER2 binding conjugate is obtained that interacts with HER2-overexpressing cells with high affinity and specificity. Furthermore, secondary structure prediction reveals that the α-helical content of the peptides is associated with their receptor recognition. This highly specific conjugate can be used as a starting point for diagnostical or drug-targeting purposes in upcoming studies.


Sujet(s)
Tumeurs du sein/génétique , Thérapie moléculaire ciblée , Peptides/pharmacologie , Récepteur ErbB-2/ultrastructure , Tumeurs du sein/anatomopathologie , Tumeurs du sein/thérapie , Systèmes de délivrance de médicaments , Femelle , Régulation de l'expression des gènes tumoraux/effets des médicaments et des substances chimiques , Humains , Cellules MCF-7 , Peptides/génétique , Pronostic , Liaison aux protéines/effets des médicaments et des substances chimiques , Structure secondaire des protéines , Récepteur ErbB-2/antagonistes et inhibiteurs , Récepteur ErbB-2/génétique , Relation structure-activité
11.
Pathol Oncol Res ; 26(3): 1879-1892, 2020 Jul.
Article de Anglais | MEDLINE | ID: mdl-31820302

RÉSUMÉ

Among various homing devices, peptides containing the NGR tripeptide sequence represent a promising approach to selectively recognize CD13 receptor isoforms on the surface of tumor cells. They have been successfully used for the delivery of various chemotherapeutic drugs to tumor vessels. Here, we report on the murine plasma stability, in vitro and in vivo antitumor activity of our recently described bioconjugates containing daunorubicin as payload. Furthermore, CD13 expression of KS Kaposi's Sarcoma cell line and HT-29 human colon carcinoma cell line was investigated. Flow cytometry studies confirm the fast cellular uptake resulting in the rapid delivery of the active metabolite Dau = Aoa-Gly-OH to tumor cells. The increased in vitro antitumor effect might be explained by the faster rearrangement from NGR to isoDGR in case of conjugate 2 (Dau = Aoa-GFLGK(c[NleNGRE]-GG)-NH2) in comparison with conjugate 1 (Dau = Aoa-GFLGK(c[KNGRE]-GG)-NH2). Nevertheless, results indicated that both conjugates showed significant effect on inhibition of proliferation in the primary tumor and also on blood vessel formation making them a potential candidate for targeting angiogenesis processes in tumors where CD13 and integrins are involved.


Sujet(s)
Antibiotiques antinéoplasiques/pharmacologie , Antigènes CD13 , Daunorubicine/pharmacologie , Thérapie moléculaire ciblée/méthodes , Tumeurs expérimentales , Oligopeptides/pharmacologie , Animaux , Prolifération cellulaire/effets des médicaments et des substances chimiques , Daunorubicine/analogues et dérivés , Découverte de médicament/méthodes , Humains , Souris , Souris de lignée BALB C , Souris SCID , Peptides cycliques/pharmacologie , Tests d'activité antitumorale sur modèle de xénogreffe
12.
Cells ; 8(11)2019 10 29.
Article de Anglais | MEDLINE | ID: mdl-31671862

RÉSUMÉ

Epithelial to mesenchymal transition (EMT) is a multipurpose process involved in wound healing, development, and certain pathological processes, such as metastasis formation. The Tks4 scaffold protein has been implicated in cancer progression; however, its role in oncogenesis is not well defined. In this study, the function of Tks4 was investigated in HCT116 colon cancer cells by knocking the protein out using the CRISPR/Cas9 system. Surprisingly, the absence of Tks4 induced significant changes in cell morphology, motility, adhesion and expression, and localization of E-cadherin, which are all considered as hallmarks of EMT. In agreement with these findings, the marked appearance of fibronectin, a marker of the mesenchymal phenotype, was also observed in Tks4-KO cells. Analysis of the expression of well-known EMT transcription factors revealed that Snail2 was strongly overexpressed in cells lacking Tks4. Tks4-KO cells showed increased motility and decreased cell-cell attachment. Collagen matrix invasion assays demonstrated the abundance of invasive solitary cells. Finally, the reintroduction of Tks4 protein in the Tks4-KO cells restored the expression levels of relevant key transcription factors, suggesting that the Tks4 scaffold protein has a specific and novel role in EMT regulation and cancer progression.


Sujet(s)
Protéines adaptatrices de la transduction du signal/physiologie , Tumeurs du côlon/génétique , Transition épithélio-mésenchymateuse/génétique , Protéines adaptatrices de la transduction du signal/génétique , Mouvement cellulaire/génétique , Transformation cellulaire néoplasique/génétique , Tumeurs du côlon/anatomopathologie , Régulation de l'expression des gènes tumoraux , Techniques de knock-out de gènes , Cellules HCT116 , Humains , Invasion tumorale , Transduction du signal/génétique
13.
Cells ; 8(8)2019 08 05.
Article de Anglais | MEDLINE | ID: mdl-31387265

RÉSUMÉ

Obesity and adipocyte malfunction are related to and arise as consequences of disturbances in signaling pathways. Tyrosine kinase substrate with four Src homology 3 domains (Tks4) is a scaffold protein that establishes a platform for signaling cascade molecules during podosome formation and epidermal growth factor receptor (EGFR) signaling. Several lines of evidence have also suggested that Tks4 has a role in adipocyte biology; however, its roles in the various types of adipocytes at the cellular level and in transcriptional regulation have not been studied. Therefore, we hypothesized that Tks4 functions as an organizing molecule in signaling networks that regulate adipocyte homeostasis. Our aims were to study the white and brown adipose depots of Tks4 knockout (KO) mice using immunohistology and western blotting and to analyze gene expression changes regulated by the white, brown, and beige adipocyte-related transcription factors via a PCR array. Based on morphological differences in the Tks4-KO adipocytes and increased uncoupling protein 1 (UCP1) expression in the white adipose tissue (WAT) of Tks4-KO mice, we concluded that the beigeing process was more robust in the WAT of Tks4-KO mice compared to the wild-type animals. Furthermore, in the Tks4-KO WAT, the expression profile of peroxisome proliferator-activated receptor gamma (PPARγ)-regulated adipogenesis-related genes was shifted in favor of the appearance of beige-like cells. These results suggest that Tks4 and its downstream signaling partners are novel regulators of adipocyte functions and PPARγ-directed white to beige adipose tissue conversion.


Sujet(s)
Protéines adaptatrices de la transduction du signal/métabolisme , Adipocytes beiges/métabolisme , Homéostasie , Protéines adaptatrices de la transduction du signal/génétique , Adipocytes beiges/cytologie , Adipocytes blancs/cytologie , Adipocytes blancs/métabolisme , Adipogenèse , Animaux , Cellules cultivées , Souris , Souris de lignée C57BL , Récepteur PPAR gamma/génétique , Récepteur PPAR gamma/métabolisme , Protéine-1 de découplage/génétique , Protéine-1 de découplage/métabolisme
14.
Vaccines (Basel) ; 7(3)2019 Aug 27.
Article de Anglais | MEDLINE | ID: mdl-31461944

RÉSUMÉ

Epitopes from different proteins expressed by Mycobacterium tuberculosis (Rv1886c, Rv0341, Rv3873) were selected based on previously reported antigenic properties. Relatively short linear T-cell epitope peptides generally have unordered structure, limited immunogenicity, and low in vivo stability. Therefore, they rely on proper formulation and on the addition of adjuvants. Here we report a convenient synthetic route to induce a more potent immune response by the formation of a trivalent conjugate in spatial arrangement. Chemical and structural characterization of the vaccine conjugates was followed by the study of cellular uptake and localization. Immune response was assayed by the measurement of splenocyte proliferation and cytokine production, while vaccine efficacy was studied in a murine model of tuberculosis. The conjugate showed higher tendency to fold and increased internalization rate into professional antigen presenting cells compared to free epitopes. Cellular uptake was further improved by the incorporation of a palmitoyl group to the conjugate and the resulted pal-A(P)I derivative possessed an internalization rate 10 times higher than the free epitope peptides. Vaccination of CB6F1 mice with free peptides resulted in low T-cell response. In contrast, significantly higher T-cell proliferation with prominent expression of IFN-γ, IL-2, and IL-10 cytokines was measured for the palmitoylated conjugate. Furthermore, the pal-A(P)I conjugate showed relevant vaccine efficacy against Mycobacterium tuberculosis infection.

15.
Sci Rep ; 9(1): 5781, 2019 04 08.
Article de Anglais | MEDLINE | ID: mdl-30962481

RÉSUMÉ

The main driver of osteoporosis is an imbalance between bone resorption and formation. The pathogenesis of osteoporosis has also been connected to genetic alterations in key osteogenic factors and dysfunction of bone marrow mesenchymal stem/stromal cells (BM-MSCs). Tks4 (encoded by the Sh3pxd2b gene) is a scaffold protein involved in podosome organization. Homozygous mutational inactivation of Sh3pxd2b causes Frank-ter Haar syndrome (FTHS), a genetic disease that affects bone tissue as well as eye, ear, and heart functions. To date, the role of Tks4 in adult bone homeostasis has not been investigated. Therefore, the aim of this study was to analyze the facial and femoral bone phenotypes of Sh3pxd2b knock-out (KO) mice using micro-CT methods. In addition to the analysis of the Sh3pxd2b-KO mice, the bone microstructure of an FTHS patient was also examined. Macro-examination of skulls from Tks4-deficient mice revealed craniofacial malformations that were very similar to symptoms of the FTHS patient. The femurs of the Sh3pxd2b-KO mice had alterations in the trabecular system and showed signs of osteoporosis, and, similarly, the FTHS patient also showed increased trabecular separation/porosity. The expression levels of the Runx2 and osteocalcin bone formation markers were reduced in the bone and bone marrow of the Sh3pxd2b-KO femurs, respectively. Our recent study demonstrated that Sh3pxd2b-KO BM-MSCs have a reduced ability to differentiate into osteoblast lineage cells; therefore, we concluded that the Tks4 scaffold protein is important for osteoblast formation, and that it likely plays a role in bone cell homeostasis.


Sujet(s)
Protéines adaptatrices de la transduction du signal/métabolisme , Malformations crâniofaciales/génétique , Cardiopathies congénitales/génétique , Homéostasie , Ostéochondrodysplasies/congénital , Protéines adaptatrices de la transduction du signal/génétique , Animaux , Moelle osseuse/métabolisme , Os spongieux/imagerie diagnostique , Os spongieux/métabolisme , Os spongieux/anatomopathologie , Cellules cultivées , Sous-unité alpha 1 du facteur CBF/génétique , Sous-unité alpha 1 du facteur CBF/métabolisme , Malformations crâniofaciales/métabolisme , Malformations crâniofaciales/anatomopathologie , Incapacités de développement/génétique , Incapacités de développement/métabolisme , Incapacités de développement/anatomopathologie , Fémur/imagerie diagnostique , Fémur/métabolisme , Fémur/anatomopathologie , Cardiopathies congénitales/métabolisme , Cardiopathies congénitales/anatomopathologie , Humains , Mâle , Souris , Souris de lignée C57BL , Ostéocalcine/génétique , Ostéocalcine/métabolisme , Ostéochondrodysplasies/génétique , Ostéochondrodysplasies/métabolisme , Ostéochondrodysplasies/anatomopathologie , Ostéogenèse , Jeune adulte
16.
J Biol Chem ; 294(12): 4608-4620, 2019 03 22.
Article de Anglais | MEDLINE | ID: mdl-30659095

RÉSUMÉ

Src homology 3 (SH3) domains bind proline-rich linear motifs in eukaryotes. By mediating inter- and intramolecular interactions, they regulate the functions of many proteins involved in a wide variety of signal transduction pathways. Phosphorylation at different tyrosine residues in SH3 domains has been reported previously. In several cases, the functional consequences have also been investigated. However, a full understanding of the effects of tyrosine phosphorylation on the ligand interactions and cellular functions of SH3 domains requires detailed structural, atomic-resolution studies along with biochemical and biophysical analyses. Here, we present the first crystal structures of tyrosine-phosphorylated human SH3 domains derived from the Abelson-family kinases ABL1 and ABL2 at 1.6 and 1.4 Å resolutions, respectively. The structures revealed that simultaneous phosphorylation of Tyr89 and Tyr134 in ABL1 or the homologous residues Tyr116 and Tyr161 in ABL2 induces only minor structural perturbations. Instead, the phosphate groups sterically blocked the ligand-binding grooves, thereby strongly inhibiting the interaction with proline-rich peptide ligands. Although some crystal contact surfaces involving phosphotyrosines suggested the possibility of tyrosine phosphorylation-induced dimerization, we excluded this possibility by using small-angle X-ray scattering (SAXS), dynamic light scattering (DLS), and NMR relaxation analyses. Extensive analysis of relevant databases and literature revealed not only that the residues phosphorylated in our model systems are well-conserved in other human SH3 domains, but that the corresponding tyrosines are known phosphorylation sites in vivo in many cases. We conclude that tyrosine phosphorylation might be a mechanism involved in the regulation of the human SH3 interactome.


Sujet(s)
Tyrosine/métabolisme , Domaine d'homologie SRC , Séquence d'acides aminés , Cristallographie aux rayons X , Dimérisation , Humains , Ligands , Résonance magnétique nucléaire biomoléculaire , Phosphorylation , Liaison aux protéines , Conformation des protéines , Protein-tyrosine kinases/composition chimique , Protein-tyrosine kinases/métabolisme , Protéines proto-oncogènes c-abl/composition chimique , Protéines proto-oncogènes c-abl/métabolisme , Diffusion aux petits angles
17.
Int J Mol Sci ; 19(11)2018 Nov 05.
Article de Anglais | MEDLINE | ID: mdl-30400675

RÉSUMÉ

Long non-coding RNAs (lncRNAs) are emerging as important regulators of cellular processes and are extensively involved in the development of different cancers; including leukemias. As one of the accepted methods of lncRNA function is affecting chromatin structure; lncRNA binding has been shown for different chromatin modifiers. Histone lysine methyltransferases (HKMTs) are also subject of lncRNA regulation as demonstrated for example in the case of Polycomb Repressive Complex 2 (PRC2). Mixed Lineage Leukemia (MLL) proteins that catalyze the methylation of H3K4 have been implicated in several different cancers; yet many details of their regulation and targeting remain elusive. In this work we explored the RNA binding capability of two; so far uncharacterized regions of MLL4; with the aim of shedding light to the existence of possible regulatory lncRNA interactions of the protein. We demonstrated that both regions; one that contains a predicted RNA binding sequence and one that does not; are capable of binding to different RNA constructs in vitro. To our knowledge, these findings are the first to indicate that an MLL protein itself is capable of lncRNA binding.


Sujet(s)
Protéines de liaison à l'ADN/composition chimique , Protéines de liaison à l'ADN/métabolisme , Protéines intrinsèquement désordonnées/composition chimique , Protéines intrinsèquement désordonnées/métabolisme , Protéines de liaison à l'ARN/composition chimique , Protéines de liaison à l'ARN/métabolisme , ARN/métabolisme , Séquence d'acides aminés , Simulation numérique , Protéines de liaison à l'ADN/génétique , Protéines intrinsèquement désordonnées/génétique , Modèles biologiques , Liaison aux protéines , Structure secondaire des protéines , ARN long non codant/métabolisme , Protéines de liaison à l'ARN/génétique
18.
Pharmaceutics ; 10(4)2018 Nov 09.
Article de Anglais | MEDLINE | ID: mdl-30423956

RÉSUMÉ

Receptors for gonadotropin releasing hormone (GnRH) are highly expressed in various human cancers including breast, ovarian, endometrial, prostate and colorectal cancer. Ligands like human GnRH-I or the sea lamprey analogue GnRH-III represent a promising approach for the development of efficient drug delivery systems for targeted tumor therapy. Here, we report on the synthesis and cytostatic effect of 14 oxime bond-linked daunorubicin GnRH-III conjugates containing a variety of unnatural amino acids within the peptide sequence. All compounds demonstrated a reduced cell viability in vitro on estrogen receptor α (ERα) positive and ERα negative cancer cells. The best candidate revealed an increased cancer cell growth inhibitory effect compared to our lead-compound GnRH-III-[4Lys(Bu),8Lys(Dau=Aoa)]. Flow cytometry and fluorescence microscopy studies showed that the cellular uptake of the novel conjugate is substantially improved leading to an accelerated delivery of the drug to its site of action. However, the release of the active drug-metabolite by lysosomal enzymes was not negatively affected by amino acid substitution, while the compound provided a high stability in human blood plasma. Receptor binding studies were carried out to ensure a high binding affinity of the new compound for the GnRH-receptor. It was demonstrated that GnRH-III-[²ΔHis,³d-Tic,4Lys(Bu),8Lys(Dau=Aoa)] is a highly potent and promising anticancer drug delivery system for targeted tumor therapy.

19.
Biochemistry ; 57(28): 4186-4196, 2018 07 17.
Article de Anglais | MEDLINE | ID: mdl-29928795

RÉSUMÉ

The nonreceptor tyrosine kinase Src is a central component of the epidermal growth factor (EGF) signaling pathway. Our group recently showed that the Frank-ter Haar syndrome protein Tks4 (tyrosine kinase substrate with four Src homology 3 domains) is also involved in EGF signaling. Here we demonstrate that Tks4 and Src bind directly to each other and elucidate the details of the molecular mechanism of this complex formation. Results of GST pull-down and fluorescence polarization assays show that both a proline-rich SH3 binding motif (PSRPLPDAP, residues 466-474) and an adjacent phosphotyrosine-containing SH2 binding motif (pYEEI, residues 508-511) in Tks4 are responsible for Src binding. These motifs interact with the SH3 and SH2 domains of Src, respectively, leading to a synergistic enhancement of binding strength and a highly stable, "bidentate"-type of interaction. In agreement with these results, we found that the association of Src with Tks4 is permanent and the complex lasts at least 3 h in living cells. We conclude that the interaction of Tks4 with Src may result in the long term stabilization of the kinase in its active conformation, leading to prolonged Src activity following EGF stimulation.


Sujet(s)
Protéines adaptatrices de la transduction du signal/métabolisme , Facteur de croissance épidermique/métabolisme , Domaine d'homologie SRC , src-Family kinases/métabolisme , Protéines adaptatrices de la transduction du signal/composition chimique , Motifs d'acides aminés , Séquence d'acides aminés , Animaux , Sites de fixation , Cellules COS , Chlorocebus aethiops , Humains , src-Family kinases/composition chimique
20.
Beilstein J Org Chem ; 14: 756-771, 2018.
Article de Anglais | MEDLINE | ID: mdl-29719573

RÉSUMÉ

Gonadotropin releasing hormone-III (GnRH-III), a native isoform of the human GnRH isolated from sea lamprey, specifically binds to GnRH receptors on cancer cells enabling its application as targeting moieties for anticancer drugs. Recently, we reported on the identification of a novel daunorubicin-GnRH-III conjugate (GnRH-III-[4Lys(Bu), 8Lys(Dau=Aoa)] with efficient in vitro and in vivo antitumor activity. To get a deeper insight into the mechanism of action of our lead compound, the cellular uptake was followed by confocal laser scanning microscopy. Hereby, the drug daunorubicin could be visualized in different subcellular compartments by following the localization of the drug in a time-dependent manner. Colocalization studies were carried out to prove the presence of the drug in lysosomes (early stage) and on its site of action (nuclei after 10 min). Additional flow cytometry studies demonstrated that the cellular uptake of the bioconjugate was inhibited in the presence of the competitive ligand triptorelin indicating a receptor-mediated pathway. For comparative purpose, six novel daunorubicin-GnRH-III bioconjugates have been synthesized and biochemically characterized in which 6Asp was replaced by D-Asp, D-Glu and D-Trp. In addition to the analysis of the in vitro cytostatic effect and cellular uptake, receptor binding studies with 125I-triptorelin as radiotracer and degradation of the GnRH-III conjugates in the presence of rat liver lysosomal homogenate have been performed. All derivatives showed high binding affinities to GnRH receptors and displayed in vitro cytostatic effects on HT-29 and MCF-7 cancer cells with IC50 values in a low micromolar range. Moreover, we found that the release of the active drug metabolite and the cellular uptake of the bioconjugates were strongly affected by the amino acid exchange which in turn had an impact on the antitumor activity of the bioconjugates.

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