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早期胚胎中细胞动力学收缩环的结构进展:支架蛋白的定位、α-辅肌动蛋白的募集以及肌球蛋白II抑制的影响。

Cytokinetic contractile ring structural progression in an early embryo: positioning of scaffolding proteins, recruitment of α-actinin, and effects of myosin II inhibition.

作者信息

Henson John H, Reyes Gabriela, Lo Nina T, Herrera Karina, McKim Quenelle W, Herzon Hannah Y, Galvez-Ceron Maritriny, Hershey Alexandra E, Kim Rachael S, Shuster Charles B

机构信息

Department of Biology, Dickinson College, Carlisle, PA, United States.

Friday Harbor Laboratories, University of Washington, Friday Harbor, WA, United States.

出版信息

Front Cell Dev Biol. 2024 Sep 27;12:1483345. doi: 10.3389/fcell.2024.1483345. eCollection 2024.

Abstract

Our knowledge of the assembly and dynamics of the cytokinetic contractile ring (CR) in animal cells remains incomplete. We have previously used super-resolution light microscopy and platinum replica electron microscopy to elucidate the ultrastructural organization of the CR in first division sea urchin embryos. To date, our studies indicate that the CR initiates as an equatorial band of clusters containing myosin II, actin, septin and anillin, which then congress over time into patches which coalesce into a linear array characteristic of mature CRs. In the present study, we applied super-resolution interferometric photoactivated localization microscopy to confirm the existence of septin filament-like structures in the developing CR, demonstrate the close associations between septin2, anillin, and myosin II in the CR, as well as to show that septin2 appears consistently submembranous, whereas anillin is more widely distributed in the early CR. We also provide evidence that the major actin cross-linking protein α-actinin only associates with the linearized, late-stage CR and not with the early CR clusters, providing further support to the idea that α-actinin associates with actomyosin structures under tension and can serve as a counterbalance. In addition, we show that inhibition of actomyosin contraction does not stop the assembly of the early CR clusters but does arrest the progression of these structures to the aligned arrays required for functional cytokinesis. Taken together our results reinforce and extend our model for a cluster to patch to linear structural progression of the CR in sea urchin embryos and highlight the evolutionary relationships with cytokinesis in fission yeast.

摘要

我们对动物细胞中细胞分裂收缩环(CR)的组装和动力学的了解仍然不完整。我们之前使用超分辨率光学显微镜和铂复型电子显微镜来阐明海胆胚胎第一次分裂时CR的超微结构组织。迄今为止,我们的研究表明,CR最初是一条包含肌球蛋白II、肌动蛋白、隔膜蛋白和膜联蛋白的赤道带簇,随着时间的推移,这些簇会聚集形成斑块,进而合并成成熟CR特有的线性阵列。在本研究中,我们应用超分辨率干涉光激活定位显微镜来确认发育中的CR中存在隔膜蛋白丝状结构,证明CR中隔膜蛋白2、膜联蛋白和肌球蛋白II之间的紧密关联,以及表明隔膜蛋白2始终出现在膜下,而膜联蛋白在早期CR中分布更广泛。我们还提供证据表明,主要的肌动蛋白交联蛋白α-辅肌动蛋白仅与线性化的后期CR相关联,而不与早期CR簇相关联,这进一步支持了α-辅肌动蛋白在张力作用下与肌动球蛋白结构相关联并可起到平衡作用的观点。此外,我们表明抑制肌动球蛋白收缩不会阻止早期CR簇的组装,但会阻止这些结构向功能性胞质分裂所需的排列阵列的进展。综上所述,我们的结果强化并扩展了我们关于海胆胚胎中CR从簇到斑块再到线性结构进展的模型,并突出了与裂殖酵母胞质分裂的进化关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b14e/11467475/4fa7333d0a3f/fcell-12-1483345-g001.jpg

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