FKBP51‑Hsp90 Interaction‑Defcient Mice Exhibit Altered Endocrine Stress Response and Sex Diferences Under High‑Fat Diet

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dc.contributor.author Wang, Lisha
dc.contributor.author Wojcieszak, Jakub
dc.contributor.author Kumar, Rajnish
dc.contributor.author Zhao, Zhe
dc.contributor.author Sun, Xuelian
dc.contributor.author Xie, Shaoxun
dc.contributor.author Winblad, Bengt
dc.contributor.author Pavlov, Pavel F.
dc.date.accessioned 2024-02-08T09:29:41Z
dc.date.available 2024-02-08T09:29:41Z
dc.date.issued 2023-09-19
dc.identifier.issn 08937648
dc.identifier.uri http://localhost:8080/xmlui/handle/123456789/2838
dc.description This paper published with affiliation IIT (BHU), Varanasi in open access mode. en_US
dc.description.abstract FK506-binding protein 51 kDa (FKBP51), encoded by Fkbp5 gene, gained considerable attention as an important regulator of several aspects of human biology including stress response, metabolic dysfunction, inflammation, and age-dependent neurodegeneration. Its catalytic peptidyl-prolyl isomerase (PPIase) activity is mediated by the N-terminal FK506-binding (FK1) domain, whereas the C-terminal tetratricopeptide motif (TPR) domain is responsible for FKBP51 interaction with molecular chaperone heat shock protein 90 (Hsp90). To understand FKBP51-related biology, several mouse models have been created. These include Fkbp5 complete and conditional knockouts, overexpression, and humanized models. To dissect the role of FKBP51-Hsp90 interaction in FKBP51 biology, we have created an interaction-deficient mouse (Fkbp5TPRmut) by introducing two-point mutations in the TPR domain of FKBP51. FKBP51-Hsp90 interaction-deficient mice are viable, fertile and show Mendelian inheritance. Intracellular association of FKBP51 with Hsp90 is significantly reduced in homozygous mutants compared to wild-type animals. No behavioral differences between genotypes were seen at 2 months of age, however, sex-dependent differences were detected in Y-maze and fear conditioning tests at the age of 12 months. Moreover, we have found a significant reduction in plasma levels of corticosterone and adrenocorticotropic hormone in Fkbp5TPRmut mice after acute stress. In contrast to Fkbp5 knockout mice, females of Fkbp5TPRmut showed increased body weight gain under high-fat diet treatment. Our data confirm the importance of FKBP51-Hsp90 interactions for stress-related endocrine signaling. Also, Fkbp5TPRmut mice can serve as a useful in vivo tool to discriminate between Hsp90-dependent and independent functions of FKBP51. en_US
dc.description.sponsorship Open access funding provided by Karolinska Institute. This study was supported by grants from Margaretha af Ugglas foundation, Swedish Research Council (2018–02843), Brain Foundation (Fo 2019−0140), Alzheimer Foundation, Foundation for Geriatric Diseases at Karolinska Institutet, Loo and Hans Ostermans Foundation at Karolinska Institutet, Research Foundation Grants at Karolinska Institutet, Magnus Bergvalls Foundation, Gun and Bertil Stohnes Foundation, Tore Nilssons Foundation for medical research, the Foundation for Old Servants, ÅHLÉN Foundation, China Scholarship Council, and the private initiative “Innovative ways to fght Alzheimer’s disease - Leif Lundblad Family and others”. en_US
dc.language.iso en en_US
dc.publisher Springer en_US
dc.relation.ispartofseries Molecular Neurobiology;
dc.subject FKBP51-Hsp90 interaction en_US
dc.subject Metabolism en_US
dc.subject Mouse knock-in model en_US
dc.subject Stress en_US
dc.title FKBP51‑Hsp90 Interaction‑Defcient Mice Exhibit Altered Endocrine Stress Response and Sex Diferences Under High‑Fat Diet en_US
dc.type Article en_US


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