SNAREs, tethers and SM proteins: how to overcome the final barriers to membrane fusion?

Author:

Risselada Herre Jelger12,Mayer Andreas3ORCID

Affiliation:

1. Department of Theoretical Physics, Georg-August University of Göttingen, Göttingen, Germany

2. Leiden Institute of Chemistry (LIC), University of Leiden, Leiden, The Netherlands

3. Département de Biochimie, Université de Lausanne, Epalinges, Switzerland

Abstract

Physiological membrane vesicles are built to separate reaction spaces in a stable manner, even when they accidentally collide or are kept in apposition by spatial constraints in the cell. This requires a natural resistance to fusion and mixing of their content, which originates from substantial energetic barriers to membrane fusion [1]. To facilitate intracellular membrane fusion reactions in a controlled manner, proteinaceous fusion machineries have evolved. An important open question is whether protein fusion machineries actively pull the fusion reaction over the present free energy barriers, or whether they rather catalyze fusion by lowering those barriers. At first sight, fusion proteins such as SNARE complexes and viral fusion proteins appear to act as nano-machines, which mechanically transduce force to the membranes and thereby overcome the free energy barriers [2,3]. Whether fusion proteins additionally alter the free energy landscape of the fusion reaction via catalytic roles is less obvious. This is a question that we shall discuss in this review, with particular focus on the influence of the eukaryotic SNARE-dependent fusion machinery on the final step of the reaction, the formation and expansion of the fusion pore.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

Cited by 23 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Structure of a membrane tethering complex incorporating multiple SNAREs;Nature Structural & Molecular Biology;2024-01-09

2. Mechanisms of SNARE proteins in membrane fusion;Nature Reviews Molecular Cell Biology;2023-10-17

3. Structure of the endosomal CORVET tethering complex;2023-10-13

4. The machinery of vesicle fusion;Current Opinion in Cell Biology;2023-08

5. A narrative review of the role of exosomes and caveolin-1 in liver diseases and cancer;International Immunopharmacology;2023-07

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