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有丝分裂和神经发育蛋白 NDE1 和 NDEL1 在溶液中形成具有折叠回结构的二聚体、四聚体和聚合物。

The mitosis and neurodevelopment proteins NDE1 and NDEL1 form dimers, tetramers, and polymers with a folded back structure in solution.

机构信息

Medical Genetics Section, Institute of Genetics & Molecular Medicine, University of Edinburgh, Edinburgh EH4 2XU, United Kingdom.

出版信息

J Biol Chem. 2012 Sep 21;287(39):32381-93. doi: 10.1074/jbc.M112.393439. Epub 2012 Jul 27.

Abstract

Paralogs NDE1 (nuclear distribution element 1) and NDEL1 (NDE-like 1) are essential for mitosis and neurodevelopment. Both proteins are predicted to have similar structures, based upon high sequence similarity, and they co-complex in mammalian cells. X-ray diffraction studies and homology modeling suggest that their N-terminal regions (residues 8-167) adopt continuous, extended α-helical coiled-coil structures, but no experimentally derived information on the structure of their C-terminal regions or the architecture of the full-length proteins is available. In the case of NDE1, no biophysical data exists. Here we characterize the structural architecture of both full-length proteins utilizing negative stain electron microscopy along with our established paradigm of chemical cross-linking followed by tryptic digestion, mass spectrometry, and database searching, which we enhance using isotope labeling for mixed NDE1-NDEL1. We determined that full-length NDE1 forms needle-like dimers and tetramers in solution, similar to crystal structures of NDEL1, as well as chain-like end-to-end polymers. The C-terminal domain of each protein, required for interaction with key protein partners dynein and DISC1 (disrupted-in-schizophrenia 1), includes a predicted disordered region that allows a bent back structure. This facilitates interaction of the C-terminal region with the N-terminal coiled-coil domain and is in agreement with previous results showing N- and C-terminal regions of NDEL1 and NDE1 cooperating in dynein interaction. It sheds light on recently identified mutations in the NDE1 gene that cause truncation of the encoded protein. Additionally, analysis of mixed NDE1-NDEL1 complexes demonstrates that NDE1 and NDEL1 can interact directly.

摘要

NDE1(核分布元件 1)和 NDEL1(NDE 样 1)的 paralogs 对于有丝分裂和神经发育至关重要。这两种蛋白质的结构非常相似,序列高度相似,并且在哺乳动物细胞中共复合物。X 射线衍射研究和同源建模表明,它们的 N 端区域(残基 8-167)采用连续的、扩展的α螺旋卷曲螺旋结构,但关于其 C 端区域的结构或全长蛋白质的结构尚无实验得出的信息。在 NDE1 的情况下,没有生物物理数据。在这里,我们利用负染色电子显微镜和我们建立的化学交联后胰蛋白酶消化、质谱和数据库搜索的既定范例来表征全长蛋白质的结构架构,我们使用混合 NDE1-NDEL1 的同位素标记来增强该范例。我们确定全长 NDE1 在溶液中形成针状二聚体和四聚体,类似于 NDEL1 的晶体结构,以及链状的首尾相连的聚合物。每个蛋白质的 C 端结构域,对于与关键蛋白伴侣 dynein 和 DISC1(精神分裂症 1 中的破坏)的相互作用是必需的,包括一个预测的无序区域,允许弯曲的后结构。这促进了 C 端区域与 N 端卷曲螺旋结构域的相互作用,并且与先前的结果一致,这些结果表明 NDEL1 和 NDE1 的 N 和 C 端区域合作参与 dynein 相互作用。它揭示了最近在 NDE1 基因中发现的导致编码蛋白截断的突变。此外,对混合 NDE1-NDEL1 复合物的分析表明,NDE1 和 NDEL1 可以直接相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f37/3463352/80839a6ea335/zbc0401223620001.jpg

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