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迁移体细胞器形成的生物物理方面及其多种细胞功能。

Biophysical aspects of migrasome organelle formation and their diverse cellular functions.

机构信息

School of Chemistry, Raymond & Beverly Sackler Faculty of Exact Sciences, Tel Aviv University, Tel Aviv, Israel.

Center for Physics and Chemistry of Living Systems, Tel Aviv University, Tel Aviv, Israel.

出版信息

Bioessays. 2024 Aug;46(8):e2400051. doi: 10.1002/bies.202400051. Epub 2024 Jun 23.

Abstract

The transient cellular organelles known as migrasomes, which form during cell migration along retraction fibers, have emerged as a crutial factor in various fundamental cellular processes and pathologies. These membrane vesicles originate from local membrane swellings, encapsulate specific cytoplasmic content, and are eventually released to the extracellular environment or taken up by recipient cells. Migrasome biogenesis entails a sequential membrane remodeling process involving a complex interplay between various molecular factors such as tetraspanin proteins, and mechanical properties like membrane tension and bending rigidity. In this review, we summarize recent studies exploring the mechanism of migrasome formation. We emphasize how physical forces, together with molecular factors, shape migrasome biogenesis, and detail the involvement of migrasomes in various cellular processes and pathologies. A comprehensive understanding of the exact mechanism underlying migrasome formation and the identification of key molecules involved hold promise for advancing their therapeutic and diagnostic applications.

摘要

瞬态细胞细胞器,即迁移小体,在细胞沿着回缩纤维迁移的过程中形成,它们已成为各种基本细胞过程和病理学的关键因素。这些膜囊泡起源于局部膜肿胀,包裹特定的细胞质内容物,并最终被释放到细胞外环境或被受体细胞摄取。迁移小体的生物发生涉及一个连续的膜重塑过程,涉及到各种分子因素的复杂相互作用,如四跨膜蛋白,以及膜张力和弯曲刚性等机械特性。在这篇综述中,我们总结了最近探索迁移小体形成机制的研究。我们强调了物理力与分子因素如何共同塑造迁移小体的生物发生,并详细介绍了迁移小体在各种细胞过程和病理学中的作用。对迁移小体形成的确切机制的全面理解以及对涉及的关键分子的鉴定,有望促进其治疗和诊断应用的发展。

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