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F-BAR family proteins emerging regulators for cell membrane dynamic changes—from structure to human diseases

机译:F-BAR家族蛋白新兴的细胞膜动态变化调节剂-从结构到人类疾病

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摘要

Eukaryotic cell membrane dynamics change in curvature during physiological and pathological processes. In the past ten years, a novel protein family, Fes/CIP4 homology-Bin/Amphiphysin/Rvs (F-BAR) domain proteins, has been identified to be the most important coordinators in membrane curvature regulation. The F-BAR domain family is a member of the Bin/Amphiphysin/Rvs (BAR) domain superfamily that is associated with dynamic changes in cell membrane. However, the molecular basis in membrane structure regulation and the biological functions of F-BAR protein are unclear. The pathophysiological role of F-BAR protein is unknown. This review summarizes the current understanding of structure and function in the BAR domain superfamily, classifies F-BAR family proteins into nine subfamilies based on domain structure, and characterizes F-BAR protein structure, domain interaction, and functional relevance. In general, F-BAR protein binds to cell membrane via F-BAR domain association with membrane phospholipids and initiates membrane curvature and scission via Src homology-3 (SH3) domain interaction with its partner proteins. This process causes membrane dynamic changes and leads to seven important cellular biological functions, which include endocytosis, phagocytosis, filopodium, lamellipodium, cytokinesis, adhesion, and podosome formation, via distinct signaling pathways determined by specific domain-binding partners. These cellular functions play important roles in many physiological and pathophysiological processes. We further summarize F-BAR protein expression and mutation changes observed in various diseases and developmental disorders. Considering the structure feature and functional implication of F-BAR proteins, we anticipate that F-BAR proteins modulate physiological and pathophysiological processes via transferring extracellular materials, regulating cell trafficking and mobility, presenting antigens, mediating extracellular matrix degradation, and transmitting signaling for cell proliferation.
机译:真核细胞膜动力学在生理和病理过程中曲率变化。在过去的十年中,一个新的蛋白质家族Fes / CIP4同源性-Bin /双亲性蛋白/ Rvs(F-BAR)域蛋白被确定为膜曲率调节中最重要的协调者。 F-BAR域家族是Bin / Amphiphysin / Rvs(BAR)域超家族的成员,该家族与细胞膜的动态变化有关。然而,尚不清楚膜结构调控的分子基础和F-BAR蛋白的生物学功能。 F-BAR蛋白的病理生理作用尚不清楚。这篇综述总结了当前对BAR域超家族的结构和功能的理解,基于域结构将F-BAR家族蛋白分为九个亚家族,并描述了F-BAR蛋白结构,域相互作用和功能相关性。通常,F-BAR蛋白通过F-BAR域与膜磷脂的结合与细胞膜结合,并通过Src同源性3(SH3)域与其伴侣蛋白的相互作用而引发膜弯曲和分裂。该过程引起膜动态变化,并导致七种重要的细胞生物学功能,包括内吞作用,吞噬作用,梭状芽孢杆菌,lamellipodium,胞质分裂,粘附和足小体形成,这是通过特定的结构域结合伴侣决定的不同信号传导途径。这些细胞功能在许多生理和病理生理过程中起重要作用。我们进一步总结了在各种疾病和发育障碍中观察到的F-BAR蛋白表达和突变变化。考虑到F-BAR蛋白的结构特征和功能含义,我们预计F-BAR蛋白通过转移细胞外物质,调节细胞运输和迁移,呈递抗原,介导细胞外基质降解以及传递细胞增殖信号传导来调节生理和病理生理过程。 。

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