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核沉降蛋白是一种在果蝇中从细胞质循环至中心体的蛋白质,它调控皮层微丝组织。

Nuclear-fallout, a Drosophila protein that cycles from the cytoplasm to the centrosomes, regulates cortical microfilament organization.

作者信息

Rothwell W F, Fogarty P, Field C M, Sullivan W

机构信息

Department of Biology, University of California, Santa Cruz, California 95064, USA.

出版信息

Development. 1998 Apr;125(7):1295-303. doi: 10.1242/dev.125.7.1295.

Abstract

nuclear fallout (nuf) is a maternal effect mutation that specifically disrupts the cortical syncytial divisions during Drosophila embryogenesis. We show that the nuf gene encodes a highly phosphorylated novel protein of 502 amino acids with C-terminal regions predicted to form coiled-coils. During prophase of the late syncytial divisions, Nuf concentrates at the centrosomes and is generally cytoplasmic throughout the rest of the nuclear cycle. In nuf-derived embryos, the recruitment of actin from caps to furrows during prophase is disrupted. This results in incomplete metaphase furrows specifically in regions distant from the centrosomes. The nuf mutation does not disrupt anillin or peanut recruitment to the metaphase furrows indicating that Nuf is not involved in the signaling of metaphase furrow formation. These results also suggest that anillin and peanut localization are independent of actin localization to the metaphase furrows. nuf also disrupts the initial stages of cellularization and produces disruptions in cellularization furrows similar to those observed in the metaphase furrows. The localization of Nuf to centrosomal regions throughout cellularization suggests that it plays a similar role in the initial formation of both metaphase and cellularization furrows. A model is presented in which Nuf provides a functional link between centrosomes and microfilaments.

摘要

核沉降(nuf)是一种母体效应突变,它在果蝇胚胎发育过程中特异性地破坏皮质合胞体分裂。我们发现nuf基因编码一种高度磷酸化的新型蛋白质,由502个氨基酸组成,其C端区域预计会形成卷曲螺旋结构。在晚期合胞体分裂的前期,Nuf集中在中心体,在核周期的其余阶段通常位于细胞质中。在源自nuf的胚胎中,前期从帽状体到沟的肌动蛋白募集受到破坏。这导致中期沟特别是远离中心体的区域不完整。nuf突变不会破坏膜收缩蛋白或花生蛋白向中期沟的募集,表明Nuf不参与中期沟形成的信号传导。这些结果还表明,膜收缩蛋白和花生蛋白的定位独立于肌动蛋白向中期沟的定位。nuf还会破坏细胞化的初始阶段,并在细胞化沟中产生类似于在中期沟中观察到的破坏。在整个细胞化过程中,Nuf定位于中心体区域,这表明它在中期沟和细胞化沟的初始形成中发挥类似作用。本文提出了一个模型,其中Nuf在中心体和微丝之间提供了功能联系。

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