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Ndel1卷曲螺旋结构域的结构及其与Miller-Dieker无脑回畸形致病蛋白Lis1相互作用的基础。

The structure of the coiled-coil domain of Ndel1 and the basis of its interaction with Lis1, the causal protein of Miller-Dieker lissencephaly.

作者信息

Derewenda Urszula, Tarricone Cataldo, Choi Won Chan, Cooper David R, Lukasik Steve, Perrina Franco, Tripathy Ashutosh, Kim Myung Hee, Cafiso David S, Musacchio Andrea, Derewenda Zygmunt S

机构信息

Department of Molecular Physiology and Biological Physics, University of Virginia, Charlottesville, VA 22908, USA.

出版信息

Structure. 2007 Nov;15(11):1467-81. doi: 10.1016/j.str.2007.09.015.

Abstract

Ndel1 and Nde1 are homologous and evolutionarily conserved proteins, with critical roles in cell division, neuronal migration, and other physiological phenomena. These functions are dependent on their interactions with the retrograde microtubule motor dynein and with its regulator Lis1--a product of the causal gene for isolated lissencephaly sequence (ILS) and Miller-Dieker lissencephaly. The molecular basis of the interactions of Ndel1 and Nde1 with Lis1 is not known. Here, we present a crystallographic study of two fragments of the coiled-coil domain of Ndel1, one of which reveals contiguous high-quality electron density for residues 10-166, the longest such structure reported by X-ray diffraction at high resolution. Together with complementary solution studies, our structures reveal how the Ndel1 coiled coil forms a stable parallel homodimer and suggest mechanisms by which the Lis1-interacting domain can be regulated to maintain a conformation in which two supercoiled alpha helices cooperatively bind to a Lis1 homodimer.

摘要

Ndel1和Nde1是同源且在进化上保守的蛋白质,在细胞分裂、神经元迁移及其他生理现象中发挥关键作用。这些功能依赖于它们与逆行微管动力蛋白动力蛋白以及其调节因子Lis1的相互作用——Lis1是孤立性无脑回序列(ILS)和米勒 - 迪克尔无脑回症致病基因的产物。Ndel1和Nde1与Lis1相互作用的分子基础尚不清楚。在此,我们展示了对Ndel1卷曲螺旋结构域两个片段的晶体学研究,其中一个片段揭示了10 - 166位残基连续的高质量电子密度,这是通过高分辨率X射线衍射报道的最长此类结构。结合互补的溶液研究,我们的结构揭示了Ndel1卷曲螺旋如何形成稳定的平行同二聚体,并提出了可调节与Lis1相互作用结构域以维持一种构象的机制,在该构象中两个超螺旋α螺旋协同结合到一个Lis1同二聚体上。

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