首页> 美国卫生研究院文献>Cell Regulation >Amino Acid Substitutions of Coiled-Coil Protein Tpr Abrogate Anchorage to the Nuclear Pore Complex but Not Parallel In-Register Homodimerization
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Amino Acid Substitutions of Coiled-Coil Protein Tpr Abrogate Anchorage to the Nuclear Pore Complex but Not Parallel In-Register Homodimerization

机译:螺旋卷曲蛋白Tpr废除的氨基酸取代 停泊在核孔综合体中但并非平行在册 均质化

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摘要

Tpr is a protein component of nuclear pore complex (NPC)-attached intranuclear filaments. Secondary structure predictions suggest a bipartite structure, with a large N-terminal domain dominated by heptad repeats (HRs) typical for coiled-coil–forming proteins. Proposed functions for Tpr have included roles as a homo- or heteropolymeric architectural element of the nuclear interior. To gain insight into Tpr's ultrastructural properties, we have studied recombinant Tpr segments by circular dichroism spectroscopy, chemical cross-linking, and rotary shadowing electron microscopy. We show that polypeptides of the N-terminal domain homodimerize in vitro and represent α-helical molecules of extended rod-like shape. With the use of a yeast two-hybrid approach, arrangement of the coiled-coil is found to be in parallel and in register. To clarify whether Tpr can self-assemble further into homopolymeric filaments, the full-length protein and deletion mutants were overexpressed in human cells and then analyzed by confocal immunofluorescence microscopy, cell fractionation, and immuno-electron microscopy. Surplus Tpr, which does not bind to the NPC, remains in a soluble state of ∼7.5 S and occasionally forms aggregates of entangled molecules but neither self-assembles into extended linear filaments nor stably binds to other intranuclear structures. Binding to the NPC is shown to depend on the integrity of individual HRs; amino acid substitutions within these HRs abrogate NPC binding and render the protein soluble but do not abolish Tpr's general ability to homodimerize. Possible contributions of Tpr to the structural organization of the nuclear periphery in somatic cells are discussed.
机译:Tpr是核孔复合体(NPC)连接的核内细丝的蛋白质成分。二级结构预测表明是二分结构,其大的N末端结构域由卷曲螺旋形成蛋白典型的七肽重复序列(HRs)支配。 Tpr的拟议功能包括充当核内部的均聚或杂聚建筑元素。为了深入了解Tpr的超微结构特性,我们通过圆二色谱,化学交联和旋转阴影电子显微镜研究了重组Tpr片段。我们显示,N末端域的多肽在体外均二聚化,并代表杆状延伸的α-螺旋分子。通过使用酵母双杂交方法,发现盘绕线圈的排列是平行且对齐的。为了阐明Tpr是否可以进一步自组装成均聚物细丝,全长蛋白和缺失突变体在人细胞中过表达,然后通过共聚焦免疫荧光显微镜,细胞分离和免疫电子显微镜进行分析。盈余Tpr,不绑定到 NPC,保持约7.5 S的可溶状态,偶有形式 纠缠分子的聚集体,但没有自组装成 延伸的线性细丝也不能稳定地与其他核内结合 结构。与NPC的绑定显示出依赖于NPC的完整性 个人人力资源;这些HR中的氨基酸取代消除了NPC 结合并使蛋白质可溶但不消除Tpr 一般的二聚能力。 Tpr对 体细胞核外围的结构组织是 讨论过。

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