Literature DB >> 29483649

Structural basis for GTP hydrolysis and conformational change of MFN1 in mediating membrane fusion.

Liming Yan1, Yuanbo Qi2, Xiaofang Huang2, Caiting Yu1, Lan Lan3, Xiangyang Guo2, Zihe Rao1,3, Junjie Hu4, Zhiyong Lou5,6.   

Abstract

Fusion of the outer mitochondrial membrane is mediated by the dynamin-like GTPase mitofusin (MFN). Here, we determined the structure of the minimal GTPase domain (MGD) of human MFN1 in complex with GDP-BeF3-. The MGD folds into a canonical GTPase fold with an associating four-helix bundle, HB1, and forms a dimer. A potassium ion in the catalytic core engages GDP and BeF3- (GDP-BeF3-). Enzymatic analysis has confirmed that efficient GTP hydrolysis by MFN1 requires potassium. Compared to previously reported MGD structures, the HB1 structure undergoes a major conformational change relative to the GTPase domains, as they move from pointing in opposite directions to point in the same direction, suggesting that a swing of the four-helix bundle can pull tethered membranes closer to achieve fusion. The proposed model is supported by results from in vitro biochemical assays and mitochondria morphology rescue assays in MFN1-deleted cells. These findings offer an explanation for how Charcot-Marie-Tooth neuropathy type 2 A (CMT2A)-causing mutations compromise MFN-mediated fusion.

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Year:  2018        PMID: 29483649     DOI: 10.1038/s41594-018-0034-8

Source DB:  PubMed          Journal:  Nat Struct Mol Biol        ISSN: 1545-9985            Impact factor:   15.369


  36 in total

1.  A catalytic domain variant of mitofusin requiring a wildtype paralog for function uncouples mitochondrial outer-membrane tethering and fusion.

Authors:  Emily A Engelhart; Suzanne Hoppins
Journal:  J Biol Chem       Date:  2019-04-01       Impact factor: 5.157

Review 2.  Metabolic implications of organelle-mitochondria communication.

Authors:  Isabel Gordaliza-Alaguero; Carlos Cantó; Antonio Zorzano
Journal:  EMBO Rep       Date:  2019-08-14       Impact factor: 8.807

Review 3.  Mitochondrial dynamics and their potential as a therapeutic target.

Authors:  B N Whitley; E A Engelhart; S Hoppins
Journal:  Mitochondrion       Date:  2019-06-19       Impact factor: 4.160

4.  Restoring mitofusin balance prevents axonal degeneration in a Charcot-Marie-Tooth type 2A model.

Authors:  Yueqin Zhou; Sharon Carmona; A K M G Muhammad; Shaughn Bell; Jesse Landeros; Michael Vazquez; Ritchie Ho; Antonietta Franco; Bin Lu; Gerald W Dorn; Shaomei Wang; Cathleen M Lutz; Robert H Baloh
Journal:  J Clin Invest       Date:  2019-03-18       Impact factor: 14.808

Review 5.  Mitochondrial Morphofunction in Mammalian Cells.

Authors:  Elianne P Bulthuis; Merel J W Adjobo-Hermans; Peter H G M Willems; Werner J H Koopman
Journal:  Antioxid Redox Signal       Date:  2018-11-29       Impact factor: 8.401

Review 6.  The structural biology of the dynamin-related proteins: New insights into a diverse, multitalented family.

Authors:  Marijn G J Ford; Joshua S Chappie
Journal:  Traffic       Date:  2019-08-26       Impact factor: 6.215

7.  Insight into human Miro1/2 domain organization based on the structure of its N-terminal GTPase.

Authors:  Kyle P Smith; Pamela J Focia; Srinivas Chakravarthy; Eric C Landahl; Julian L Klosowiak; Sarah E Rice; Douglas M Freymann
Journal:  J Struct Biol       Date:  2020-10-24       Impact factor: 2.867

Review 8.  A Molecular Perspective on Mitochondrial Membrane Fusion: From the Key Players to Oligomerization and Tethering of Mitofusin.

Authors:  Dario De Vecchis; Astrid Brandner; Marc Baaden; Mickael M Cohen; Antoine Taly
Journal:  J Membr Biol       Date:  2019-09-04       Impact factor: 1.843

Review 9.  Mitofusins as mitochondrial anchors and tethers.

Authors:  Gerald W Dorn
Journal:  J Mol Cell Cardiol       Date:  2020-04-15       Impact factor: 5.000

Review 10.  Mitochondrial function in development and disease.

Authors:  Marlies P Rossmann; Sonia M Dubois; Suneet Agarwal; Leonard I Zon
Journal:  Dis Model Mech       Date:  2021-06-11       Impact factor: 5.758

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