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本文引用的文献

1
Organogenesis in normal and lobeless embryos of the marine prosobranch gastropod Ilyanassa obsoleta.海洋前鳃亚纲腹足动物光帽强蟹正常胚胎和无叶胚胎的器官发生
J Morphol. 1971 Mar;133(3):339-352. doi: 10.1002/jmor.1051330307.
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SRRF: Universal live-cell super-resolution microscopy.SRRF:通用活细胞超分辨率显微镜。
Int J Biochem Cell Biol. 2018 Aug;101:74-79. doi: 10.1016/j.biocel.2018.05.014. Epub 2018 May 28.
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Cdc42 controls primary mesenchyme cell morphogenesis in the sea urchin embryo.Cdc42控制海胆胚胎中初级间充质细胞的形态发生。
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Establishment and activity of the D quadrant organizer in the marine gastropod Crepidula fornicata.海生腹足动物福氏海盘车中D象限组织者的建立与活性
Dev Biol. 2017 Nov 15;431(2):282-296. doi: 10.1016/j.ydbio.2017.09.003. Epub 2017 Sep 6.
5
Removal of the polar lobe leads to the formation of functionally deficient photocytes in the annelidChaetopterus variopedatus.切除极叶会导致多毛纲动物多变磷虫中形成功能缺陷的发光细胞。
Rouxs Arch Dev Biol. 1989 Oct;198(3):129-136. doi: 10.1007/BF02438937.
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CYK-4 regulates Rac, but not Rho, during cytokinesis.在胞质分裂过程中,CYK-4调节Rac,但不调节Rho。
Mol Biol Cell. 2017 May 1;28(9):1258-1270. doi: 10.1091/mbc.E17-01-0020. Epub 2017 Mar 15.
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Fast live-cell conventional fluorophore nanoscopy with ImageJ through super-resolution radial fluctuations.基于超分辨率径向波动的 ImageJ 快速活细胞常规荧光纳米显微镜
Nat Commun. 2016 Aug 12;7:12471. doi: 10.1038/ncomms12471.
8
The Timing of Midzone Stabilization during Cytokinesis Depends on Myosin II Activity and an Interaction between INCENP and Actin.胞质分裂过程中中区稳定的时机取决于肌球蛋白II的活性以及INCENP与肌动蛋白之间的相互作用。
Curr Biol. 2016 Mar 7;26(5):698-706. doi: 10.1016/j.cub.2016.01.018. Epub 2016 Feb 18.
9
Arp2/3 complex inhibition radically alters lamellipodial actin architecture, suspended cell shape, and the cell spreading process.Arp2/3复合物抑制作用会从根本上改变片状伪足的肌动蛋白结构、悬浮细胞形态以及细胞铺展过程。
Mol Biol Cell. 2015 Mar 1;26(5):887-900. doi: 10.1091/mbc.E14-07-1244. Epub 2015 Jan 7.
10
An Arp2/3 nucleated F-actin shell fragments nuclear membranes at nuclear envelope breakdown in starfish oocytes.在海星卵母细胞中,由Arp2/3成核的F-肌动蛋白壳在核膜破裂时使核膜碎片化。
Curr Biol. 2014 Jun 16;24(12):1421-1428. doi: 10.1016/j.cub.2014.05.019. Epub 2014 Jun 5.

细胞骨架极化和细胞分裂信号驱动螺旋胚胎极体的形成。

Cytoskeletal polarization and cytokinetic signaling drives polar lobe formation in spiralian embryos.

机构信息

Department of Biology, New Mexico State University, Las Cruces, NM, 88003, USA; University of Washington Friday Harbor Laboratories, Friday Harbor, WA, 98250, USA.

University of Washington Friday Harbor Laboratories, Friday Harbor, WA, 98250, USA; Department of Biology, Dickinson College, Carlisle, PA, 17013, USA.

出版信息

Dev Biol. 2019 Dec 15;456(2):201-211. doi: 10.1016/j.ydbio.2019.08.020. Epub 2019 Aug 31.

DOI:10.1016/j.ydbio.2019.08.020
PMID:31479647
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6925573/
Abstract

In many spiralians, asymmetry in the first two cleavages is achieved through the formation of a polar lobe (PL), which transiently constricts to sequester vegetal cytoplasm into the CD and D blastomeres. While microtubules and actin filaments are required for polar lobe formation, little else is known regarding the structural and functional similarities with the contractile ring, or how the PL constriction is able to form perpendicular to the cleavage plane. Examination of scallop embryos revealed that while activated myosin II could be detected in both the cleavage furrow and early PL constriction, astral or central spindle microtubules were not observed associated with the PL neck until the constriction was nearly complete. Further, inhibition of Aurora B had no effect on polar lobe initiation, but blocked both contractile ring ingression and PL constriction beyond phase II. The cortex destined for PL sequestration was marked by enrichment of the Arp2/3 complex, which was first detected during meiosis and remained enriched at the vegetal pole through the first two cleavages. Inhibition of Arp2/3 affected PL formation and partitioning of cytoplasm into the two daughter cells, suggesting that Arp2/3 plays a functional role in defining the zone of cortex to be sequestered into the polar lobe. Together, these data offer for the first time a mechanism by which a cytoskeletal specialization defines the polar lobe in this atypical form of asymmetric cell division.

摘要

在许多旋毛虫中,通过形成一个暂时收缩的极性叶(PL)来实现前两次分裂的不对称性,从而将植物细胞质隔离到 CD 和 D 卵裂球中。虽然微管和肌动蛋白丝对于极性叶的形成是必需的,但对于与收缩环的结构和功能相似性,或者极性叶收缩如何能够垂直于分裂面形成,人们知之甚少。对扇贝胚胎的研究表明,虽然在分裂沟和早期极性叶收缩中都可以检测到激活的肌球蛋白 II,但直到收缩几乎完全完成之前,都没有观察到星状或中心纺锤体微管与 PL 颈部相关联。此外,抑制 Aurora B 对极性叶的起始没有影响,但阻止了收缩环的侵入和 PL 的收缩超出第二阶段。PL 隔离的皮质区域通过富含 Arp2/3 复合物来标记,该复合物在减数分裂期间首次被检测到,并通过前两次分裂在植物极保持富集。Arp2/3 的抑制会影响 PL 的形成和细胞质分配到两个子细胞中,这表明 Arp2/3 在定义要隔离到极性叶的皮质区域方面发挥了功能作用。这些数据首次提供了一种机制,即细胞骨架的特化定义了这种非典型的不对称细胞分裂中的极性叶。