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顶端域极化将肌动球蛋白活性定位到驱动棘轮样顶端收缩。

Apical domain polarization localizes actin-myosin activity to drive ratchet-like apical constriction.

机构信息

Department of Biology, Massachusetts Institute of Technology, Cambridge, Massachusetts 02142, USA.

出版信息

Nat Cell Biol. 2013 Aug;15(8):926-36. doi: 10.1038/ncb2796. Epub 2013 Jul 7.

Abstract

Apical constriction promotes epithelia folding, which changes tissue architecture. During Drosophila gastrulation, mesoderm cells exhibit repeated contractile pulses that are stabilized such that cells apically constrict like a ratchet. The transcription factor Twist is required to stabilize cell shape. However, it is unknown how Twist spatially coordinates downstream signals to prevent cell relaxation. We find that during constriction, Rho-associated kinase (Rok) is polarized to the middle of the apical domain (medioapical cortex), separate from adherens junctions. Rok recruits or stabilizes medioapical myosin II (Myo-II), which contracts dynamic medioapical actin cables. The formin Diaphanous mediates apical actin assembly to suppress medioapical E-cadherin localization and form stable connections between the medioapical contractile network and adherens junctions. Twist is not required for apical Rok recruitment, but instead polarizes Rok medioapically. Therefore, Twist establishes radial cell polarity of Rok/Myo-II and E-cadherin and promotes medioapical actin assembly in mesoderm cells to stabilize cell shape fluctuations.

摘要

顶端缢缩促进上皮折叠,从而改变组织形态。在果蝇胚胎发生过程中,中胚层细胞表现出重复的收缩脉冲,这些收缩脉冲被稳定下来,使得细胞像棘轮一样在顶端缢缩。转录因子 Twist 对于稳定细胞形状是必需的。然而,目前尚不清楚 Twist 如何在空间上协调下游信号以防止细胞松弛。我们发现,在缢缩过程中,Rho 相关激酶(Rok)被极化到顶端域的中部(中顶端皮质),与黏着连接分离。Rok 招募或稳定中顶端肌球蛋白 II(Myo-II),后者收缩动态中顶端肌动蛋白电缆。formin Diaphanous 介导顶端肌动蛋白组装,以抑制中顶端 E-钙黏蛋白定位,并在中顶端收缩网络和黏着连接之间形成稳定的连接。Twist 对于顶端 Rok 招募不是必需的,但它将 Rok 极化到中顶端。因此,Twist 建立了 Rok/Myo-II 和 E-钙黏蛋白的径向细胞极性,并促进中顶端肌动蛋白组装,以稳定细胞形状波动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2393/3736338/aa02c0f23cd2/nihms495879f1.jpg

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