首页> 美国卫生研究院文献>The EMBO Journal >Epitope mapping and direct visualization of the parallel in-register arrangement of the double-stranded coiled-coil in the NuMA protein.
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Epitope mapping and direct visualization of the parallel in-register arrangement of the double-stranded coiled-coil in the NuMA protein.

机译:NuMA蛋白中双链卷曲螺旋的平行配准排列的抗原决定簇定位和直接可视化。

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摘要

NuMA, a 238 kDa protein present in the nucleus during interphase, translocates to the spindle poles in mitosis. NuMA plays an essential role in mitosis, since microinjection of the NuMA SPN-3 monoclonal antibody causes mitotic arrest and micronuclei formation. We have mapped the approximate position of the epitopes of six monoclonal NuMA antibodies using recombinant NuMA fragments. The SPN-3 epitope has been located to residues 255-267 at the C-terminus of the first helical subdomain of the central rod domain and several residues crucial for antibody binding have been identified. To gain insight into the ultrastructure of NuMA, several defined fragments, as well as the full-length recombinant protein, were expressed in Escherichia coli and purified to homogeneity. They were then characterized by chemical cross-linking, circular dichroism spectra and electron microscopy. The results directly reveal the tripartate structure of NuMA. A long central rod domain is flanked by globular end domains. The rod is 207 nm long and is at least 90% alpha-helical. It reflects a double-stranded coiled-coil with the alpha-helices arranged parallel and in register. The NuMA protein thus forms the longest coiled-coil currently known. Our analyses reveal no indication that recombinant NuMA assembles into filaments or other higher order structures.
机译:NuMA是一种在相间期存在于细胞核中的238 kDa蛋白质,在有丝分裂中易位至纺锤体极。 NuMA在有丝分裂中起着至关重要的作用,因为显微注射NuMA SPN-3单克隆抗体会导致有丝分裂停滞和微核形成。我们已经绘制了使用重组NuMA片段的六个单克隆NuMA抗体的表位的大概位置。 SPN-3表位已位于中央杆结构域第一个螺旋亚结构域C端的255-267位残基,并且已鉴定出几个对抗体结合至关重要的残基。为了深入了解NuMA的超微结构,在大肠杆菌中表达了几个确定的片段以及全长重组蛋白,并纯化至同质。然后通过化学交联,圆二色性光谱和电子显微镜对它们进行表征。结果直接揭示了NuMA的三重结构。长的中心杆结构域的侧面为球形末端结构域。棒长207 nm,且至少90%为α螺旋。它反映了一个双链螺旋线圈,其中的α螺旋平行且对齐排列。因此,NuMA蛋白形成了目前已知的最长的卷曲螺旋。我们的分析没有显示重组NuMA组装成细丝或其他更高阶结构的迹象。

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