Proteomics

Dataset Information

0

Phosphorylation-Driven Epichaperome Assembly: A Critical Regulator of Cellular Adaptability and Proliferation


ABSTRACT: The intricate protein-chaperone network is vital for cellular function. Recent discoveries have unveiled the existence of specialized chaperone complexes called epichaperomes, protein assemblies orchestrating the reconfiguration of protein-protein interaction networks, enhancing cellular adaptability and proliferation. This study delves into the structural and regulatory aspects of epichaperomes, with a particular emphasis on the significance of post-translational modifications in shaping their formation and function. A central finding of this investigation is the identification of specific PTMs on HSP90, particularly at serine residues Ser226 and Ser255 situated within an intrinsically disordered region, as critical determinants in epichaperome assembly. Our data demonstrate that the phosphorylation of these serine residues enhances HSP90's interaction with other chaperones and co-chaperones, creating a microenvironment conducive to epichaperome formation. Furthermore, this study establishes a direct link between epichaperome function and cellular physiology, especially in contexts where robust proliferation and adaptive behavior are essential, such as cancer and stem cell maintenance. These findings not only provide mechanistic insights but also hold promise for the development of novel therapeutic strategies targeting chaperone complexes in diseases characterized by epichaperome dysregulation, bridging the gap between fundamental research and precision medicine.

INSTRUMENT(S):

ORGANISM(S): Homo Sapiens (human) Mus Musculus (mouse)

TISSUE(S): Blood Cell, Epithelial Cell, Embryonic Stem Cell

DISEASE(S): Breast Cancer

SUBMITTER: Feixia Chu  

LAB HEAD: Feixia Chu, Gabriela Chiosis

PROVIDER: PXD050251 | Pride | 2024-10-17

REPOSITORIES: Pride

Dataset's files

Source:
Action DRS
450AB_1_A7R1_Daudi.pep.xml Pepxml
450AB_1_A7R1_Daudi.txt Txt
450AB_1_A8R1_Daudi.RAW Raw
450AB_S2_B6R1_IBL1.pep.xml Pepxml
450AB_S2_B6R1_IBL1.txt Txt
Items per page:
1 - 5 of 243
altmetric image

Publications

Phosphorylation-driven epichaperome assembly is a regulator of cellular adaptability and proliferation.

Roychowdhury Tanaya T   McNutt Seth W SW   Pasala Chiranjeevi C   Nguyen Hieu T HT   Thornton Daniel T DT   Sharma Sahil S   Botticelli Luke L   Digwal Chander S CS   Joshi Suhasini S   Yang Nan N   Panchal Palak P   Chakrabarty Souparna S   Bay Sadik S   Markov Vladimir V   Kwong Charlene C   Lisanti Jeanine J   Chung Sun Young SY   Ginsberg Stephen D SD   Yan Pengrong P   De Stanchina Elisa E   Corben Adriana A   Modi Shanu S   Alpaugh Mary L ML   Colombo Giorgio G   Erdjument-Bromage Hediye H   Neubert Thomas A TA   Chalkley Robert J RJ   Baker Peter R PR   Burlingame Alma L AL   Rodina Anna A   Chiosis Gabriela G   Chu Feixia F  

Nature communications 20241016 1


The intricate network of protein-chaperone interactions is crucial for maintaining cellular function. Recent discoveries have unveiled the existence of specialized chaperone assemblies, known as epichaperomes, which serve as scaffolding platforms that orchestrate the reconfiguration of protein-protein interaction networks, thereby enhancing cellular adaptability and proliferation. This study explores the structural and regulatory aspects of epichaperomes, with a particular focus on the role of p  ...[more]

Similar Datasets

2022-12-20 | PXD033459 | Pride
2021-05-28 | PXD022239 | Pride
2022-12-09 | PXD025219 | Pride
2019-11-08 | GSE126151 | GEO
2022-08-11 | PXD032037 | Pride
2026-01-13 | GSE291802 | GEO
2023-05-30 | PXD030486 | Pride
2019-03-06 | PXD009777 | Pride
2014-12-08 | PXD001284 | Pride
2023-08-10 | PXD040875 | Pride