Literature DB >> 24657651

Mitochondria: FKBP38 and mitochondrial degradation.

Michiko Shirane-Kitsuji1, Keiichi I Nakayama2.   

Abstract

FK506-binding protein 38 (FKBP38) is a membrane chaperone that is localized predominantly to mitochondria and contains a COOH-terminal tail anchor. FKBP38 also harbors an FKBP domain that confers peptidyl-prolyl cis-trans isomerase activity, but it differs from other FKBP family members in that this activity is dependent on the binding of Ca(2+)-calmodulin. FKBP38 inhibits apoptosis by recruiting the anti-apoptotic proteins Bcl-2 and Bcl-xL to mitochondria. Mice deficient in FKBP38 die soon after birth manifesting a defect in neural tube closure that results in part from unrestrained apoptosis. We recently found that FKBP38 and Bcl-2 translocate from mitochondria to the endoplasmic reticulum during mitophagy, a form of autophagy responsible for the elimination of damaged mitochondria. FKBP38 and Bcl-2 thus escape the degradative fate of most mitochondrial proteins during mitophagy. This escape of FKBP38 is dependent on the low basicity of its COOH-terminal sequence and is essential for the suppression of apoptosis during mitophagy. FKBP38 thus plays a key role in the regulation of apoptosis under normal and pathological conditions.
Copyright © 2014 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Apoptosis; Endoplasmic reticulum; FKBP38; Mitochondria; Mitophagy

Mesh:

Substances:

Year:  2014        PMID: 24657651     DOI: 10.1016/j.biocel.2014.03.007

Source DB:  PubMed          Journal:  Int J Biochem Cell Biol        ISSN: 1357-2725            Impact factor:   5.085


  11 in total

1.  FKBP8 recruits LC3A to mediate Parkin-independent mitophagy.

Authors:  Zambarlal Bhujabal; Åsa B Birgisdottir; Eva Sjøttem; Hanne B Brenne; Aud Øvervatn; Sabrina Habisov; Vladimir Kirkin; Trond Lamark; Terje Johansen
Journal:  EMBO Rep       Date:  2017-04-05       Impact factor: 8.807

2.  Emerging views of mitophagy in immunity and autoimmune diseases.

Authors:  Ye Xu; Jun Shen; Zhihua Ran
Journal:  Autophagy       Date:  2019-04-21       Impact factor: 16.016

3.  The multifaceted regulation of mitophagy by endogenous metabolites.

Authors:  Ting Zhang; Qian Liu; Weihua Gao; Sheikh Arslan Sehgal; Hao Wu
Journal:  Autophagy       Date:  2021-09-29       Impact factor: 13.391

Review 4.  Mitophagy: An Emergence of New Player in Alzheimer's Disease.

Authors:  Bunty Sharma; Deeksha Pal; Ujjawal Sharma; Aman Kumar
Journal:  Front Mol Neurosci       Date:  2022-07-06       Impact factor: 6.261

Review 5.  Regulation of PRKN-independent mitophagy.

Authors:  Petra Terešak; Ana Lapao; Nemanja Subic; Patricia Boya; Zvulun Elazar; Anne Simonsen
Journal:  Autophagy       Date:  2021-02-25       Impact factor: 16.016

Review 6.  Roles of protrudin at interorganelle membrane contact sites.

Authors:  Michiko Shirane
Journal:  Proc Jpn Acad Ser B Phys Biol Sci       Date:  2019       Impact factor: 3.493

Review 7.  The Multiple Roles of Peptidyl Prolyl Isomerases in Brain Cancer.

Authors:  Stefano Stifani
Journal:  Biomolecules       Date:  2018-10-11

Review 8.  Mitophagy Receptors in Tumor Biology.

Authors:  Yangchun Xie; Jiao Liu; Rui Kang; Daolin Tang
Journal:  Front Cell Dev Biol       Date:  2020-11-11

9.  FKBP8 variants are risk factors for spina bifida.

Authors:  Tian Tian; Xuanye Cao; Sung-Eun Kim; Ying Linda Lin; John W Steele; Robert M Cabrera; Menuka Karki; Wei Yang; Nicholas J Marini; Ethan N Hoffman; Xiao Han; Cindy Hu; Linlin Wang; Bogdan J Wlodarczyk; Gary M Shaw; Aiguo Ren; Richard H Finnell; Yunping Lei
Journal:  Hum Mol Genet       Date:  2020-11-04       Impact factor: 6.150

10.  TRIM4 is associated with neural tube defects based on genome-wide DNA methylation analysis.

Authors:  Henan Zhang; Yi Guo; Hui Gu; Xiaowei Wei; Wei Ma; Dan Liu; Kun Yu; Wenting Luo; Ling Ma; Yusi Liu; Jia Xue; Jieting Huang; Yanfu Wang; Shanshan Jia; Naixuan Dong; Hongyan Wang; Zhengwei Yuan
Journal:  Clin Epigenetics       Date:  2019-02-01       Impact factor: 6.551

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