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减数分裂发育过程中细胞器的时空动态调控:来自真菌的见解

Spatiotemporal Dynamic Regulation of Organelles During Meiotic Development, Insights From Fungi.

作者信息

Hernández-Sánchez Fernando, Peraza-Reyes Leonardo

机构信息

Departamento de Bioquímica y Biología Estructural, Instituto de Fisiología Celular, Universidad Nacional Autónoma de México, Mexico City, Mexico.

出版信息

Front Cell Dev Biol. 2022 Apr 25;10:886710. doi: 10.3389/fcell.2022.886710. eCollection 2022.

Abstract

Eukaryotic cell development involves precise regulation of organelle activity and dynamics, which adapt the cell architecture and metabolism to the changing developmental requirements. Research in various fungal model organisms has disclosed that meiotic development involves precise spatiotemporal regulation of the formation and dynamics of distinct intracellular membrane compartments, including peroxisomes, mitochondria and distinct domains of the endoplasmic reticulum, comprising its peripheral domains and the nuclear envelope. This developmental regulation implicates changes in the constitution and dynamics of these organelles, which modulate their structure, abundance and distribution. Furthermore, selective degradation systems allow timely organelle removal at defined meiotic stages, and regulated interactions between membrane compartments support meiotic-regulated organelle dynamics. This dynamic organelle remodeling is implicated in conducting organelle segregation during meiotic differentiation, and defines quality control regulatory systems safeguarding the inheritance of functional membrane compartments, promoting meiotic cell rejuvenation. Moreover, organelle remodeling is important for proper activity of the cytoskeletal system conducting meiotic nucleus segregation, as well as for meiotic differentiation. The orchestrated regulation of organelle dynamics has a determinant contribution in the formation of the renewed genetically-diverse offspring of meiosis.

摘要

真核细胞发育涉及细胞器活性和动态变化的精确调控,使细胞结构和代谢适应不断变化的发育需求。对多种真菌模式生物的研究表明,减数分裂发育涉及不同细胞内膜区室的形成和动态变化的精确时空调控,这些区室包括过氧化物酶体、线粒体以及内质网的不同区域,内质网的不同区域包括其外周区域和核膜。这种发育调控意味着这些细胞器的组成和动态变化,进而调节其结构、丰度和分布。此外,选择性降解系统允许在特定减数分裂阶段及时清除细胞器,膜区室之间的调控相互作用支持减数分裂调控的细胞器动态变化。这种动态的细胞器重塑参与减数分裂分化过程中的细胞器分离,并定义了质量控制调节系统,以保障功能性膜区室的遗传,促进减数分裂细胞的年轻化。此外,细胞器重塑对于进行减数分裂核分离的细胞骨架系统的正常活动以及减数分裂分化也很重要。细胞器动态变化的协调调控对减数分裂产生新的遗传多样化后代具有决定性作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c265/9081346/1291eec31f27/fcell-10-886710-g001.jpg

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