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LET-99在星体沟途径中发挥作用,在收缩环中肌球蛋白富集过程中它是必需的。

LET-99 functions in the astral furrowing pathway, where it is required for myosin enrichment in the contractile ring.

作者信息

Price Kari L, Rose Lesilee S

机构信息

Department of Molecular and Cellular Biology and Biochemistry, Molecular, Cellular and Developmental Biology Graduate Program, University of California, Davis, Davis, CA 95616.

Department of Molecular and Cellular Biology and Biochemistry, Molecular, Cellular and Developmental Biology Graduate Program, University of California, Davis, Davis, CA 95616

出版信息

Mol Biol Cell. 2017 Sep 1;28(18):2360-2373. doi: 10.1091/mbc.E16-12-0874. Epub 2017 Jul 12.

Abstract

The anaphase spindle determines the position of the cytokinesis furrow, such that the contractile ring assembles in an equatorial zone between the two spindle poles. Contractile ring formation is mediated by RhoA activation at the equator by the centralspindlin complex and midzone microtubules. Astral microtubules also inhibit RhoA accumulation at the poles. In the one-cell embryo, the astral microtubule-dependent pathway requires anillin, NOP-1, and LET-99. LET-99 is well characterized for generating the asymmetric cortical localization of the Gα-dependent force-generating complex that positions the spindle during asymmetric division. However, whether the role of LET-99 in cytokinesis is specific to asymmetric division and whether it acts through Gα to promote furrowing are unclear. Here we show that LET-99 contributes to furrowing in both asymmetrically and symmetrically dividing cells, independent of its function in spindle positioning and Gα regulation. LET-99 acts in a pathway parallel to anillin and is required for myosin enrichment into the contractile ring. These and other results suggest a positive feedback model in which LET-99 localizes to the presumptive cleavage furrow in response to the spindle and myosin. Once positioned there, LET-99 enhances myosin accumulation to promote furrowing in both symmetrically and asymmetrically dividing cells.

摘要

后期纺锤体决定了胞质分裂沟的位置,使得收缩环在两个纺锤体极之间的赤道区域组装。收缩环的形成是由中央纺锤体复合物和中间区微管在赤道处激活RhoA介导的。星状微管也抑制RhoA在纺锤体极的积累。在单细胞胚胎中,星状微管依赖的途径需要膜收缩蛋白、NOP-1和LET-99。LET-99在不对称分裂过程中产生定位纺锤体的Gα依赖的力产生复合物的不对称皮质定位方面具有很好的特征。然而,LET-99在胞质分裂中的作用是否特定于不对称分裂,以及它是否通过Gα促进沟的形成尚不清楚。在这里,我们表明LET-99在不对称和对称分裂的细胞中均有助于沟的形成,这与其在纺锤体定位和Gα调节中的功能无关。LET-99在与膜收缩蛋白平行的途径中起作用,是肌球蛋白富集到收缩环所必需的。这些结果和其他结果提示了一个正反馈模型,即LET-99响应纺锤体和肌球蛋白而定位于假定的分裂沟。一旦定位在那里,LET-99就会增强肌球蛋白的积累,以促进对称和不对称分裂细胞中的沟形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f50/5576900/b86e0d223fb2/2360fig1.jpg

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