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Structural basis for TRIM72 oligomerization during membrane damage repair

Author

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  • Yuemin Ma

    (Zhejiang University School of Medicine)

  • Lei Ding

    (Zhejiang University School of Medicine)

  • Zhenhai Li

    (Shanghai University)

  • Chun Zhou

    (Zhejiang University School of Medicine)

Abstract

Tripartite Motif Protein 72 (TRIM72, also named MG53) mediates membrane damage repair through membrane fusion and exocytosis. During injury, TRIM72 molecules form intermolecular disulfide bonds in response to the oxidative environment and TRIM72 oligomers are proposed to connect vesicles to the plasma membrane and promote membrane fusion in conjunction with other partners like dysferlin and caveolin. However, the detailed mechanism of TRIM72 oligomerization and action remains unclear. Here we present the crystal structure of TRIM72 B-box-coiled-coil-SPRY domains (BCC-SPRY), revealing the molecular basis of TRIM72 oligomerization, which is closely linked to disulfide bond formation. Through structure-guided mutagenesis, we have identified and characterized key residues that are important for the membrane repair function of TRIM72. Our results also demonstrate that TRIM72 interacts with several kinds of negatively charged lipids in addition to phosphatidylserine. Our work provides a structural foundation for further mechanistic studies as well as the clinical application of TRIM72.

Suggested Citation

  • Yuemin Ma & Lei Ding & Zhenhai Li & Chun Zhou, 2023. "Structural basis for TRIM72 oligomerization during membrane damage repair," Nature Communications, Nature, vol. 14(1), pages 1-13, December.
  • Handle: RePEc:nat:natcom:v:14:y:2023:i:1:d:10.1038_s41467-023-37198-1
    DOI: 10.1038/s41467-023-37198-1
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    1. Ruisheng Song & Wei Peng & Yan Zhang & Fengxiang Lv & Hong-Kun Wu & Jiaojiao Guo & Yongxing Cao & Yanbin Pi & Xin Zhang & Li Jin & Mao Zhang & Peng Jiang & Fenghua Liu & Shaoshuai Meng & Xiuqin Zhang , 2013. "Central role of E3 ubiquitin ligase MG53 in insulin resistance and metabolic disorders," Nature, Nature, vol. 494(7437), pages 375-379, February.
    2. Yanlin Jia & Ken Chen & Peihui Lin & Gissela Lieber & Miyuki Nishi & Rosalie Yan & Zhen Wang & Yonggang Yao & Yu Li & Bryan A. Whitson & Pu Duann & Haichang Li & Xinyu Zhou & Hua Zhu & Hiroshi Takeshi, 2014. "Treatment of acute lung injury by targeting MG53-mediated cell membrane repair," Nature Communications, Nature, vol. 5(1), pages 1-12, December.
    3. Yuwen Li & Xiaodan Ma & Zhiming Chen & Haiyan Wu & Pengran Wang & Wenyu Wu & Nuo Cheng & Longhui Zeng & Hao Zhang & Xun Cai & Sai-Juan Chen & Zhu Chen & Guoyu Meng, 2019. "B1 oligomerization regulates PML nuclear body biogenesis and leukemogenesis," Nature Communications, Nature, vol. 10(1), pages 1-13, December.
    4. Pengran Wang & Shirine Benhenda & Haiyan Wu & Valérie Lallemand-Breitenbach & Tao Zhen & Florence Jollivet & Laurent Peres & Yuwen Li & Sai-Juan Chen & Zhu Chen & Hugues Thé & Guoyu Meng, 2018. "Publisher Correction: RING tetramerization is required for nuclear body biogenesis and PML sumoylation," Nature Communications, Nature, vol. 9(1), pages 1-1, December.
    5. Jae-Sung Yi & Jun Sub Park & Young-Mi Ham & Nga Nguyen & Na-Rae Lee & Jin Hong & Bong-Woo Kim & Hyun Lee & Chang-Seok Lee & Byung-Cheon Jeong & Hyun Kyu Song & Hana Cho & Yoon Ki Kim & Jae-Seon Lee & , 2013. "MG53-induced IRS-1 ubiquitination negatively regulates skeletal myogenesis and insulin signalling," Nature Communications, Nature, vol. 4(1), pages 1-12, December.
    6. Pengran Wang & Shirine Benhenda & Haiyan Wu & Valérie Lallemand-Breitenbach & Tao Zhen & Florence Jollivet & Laurent Peres & Yuwen Li & Sai-Juan Chen & Zhu Chen & Hugues Thé & Guoyu Meng, 2018. "RING tetramerization is required for nuclear body biogenesis and PML sumoylation," Nature Communications, Nature, vol. 9(1), pages 1-10, December.
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