首页> 外文学位 >Identification of protein partners for NIBP, a novel NIK-and IKKB-binding protein through experimental, computational and bioinformatics techniques.
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Identification of protein partners for NIBP, a novel NIK-and IKKB-binding protein through experimental, computational and bioinformatics techniques.

机译:通过实验,计算和生物信息学技术鉴定NIBP的蛋白伴侣,NIBP是一种新型的NIK和IKKB结合蛋白。

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摘要

NIBP is a prototype member of a novel protein family. It forms a novel subcomplex of NIK-NIBP-IKKβ and enhances cytokine-induced IKKβ-mediated NFκB activation. It is also named TRAPPC9 as a key member of trafficking particle protein (TRAPP) complex II, which is essential in trans-Golgi networking (TGN). The signaling pathways and molecular mechanisms for NIBP actions remain largely unknown.;The aim of this research is to identify potential proteins interacting with NIBP, resulting in the regulation of NFκB signaling pathways and other unknown signaling pathways. At the laboratory of Dr. Wenhui Hu in the Department of Neuroscience, Temple University, sixteen partner proteins were experimentally identified that potentially bind to NIBP.;NIBP is a novel protein with no entry in the Protein Data Bank. From a computational and bioinformatics standpoint, we use prediction of secondary structure and protein disorder as well as homology-based structural modeling approaches to create a hypothesis on protein-protein interaction between NIBP and the partner proteins. Structurally, NIBP contains three distinct regions. The first region, consisting of 200 amino acids, forms a hybrid helix and beta sheet-based domain possibly similar to Sybindin domain. The second region comprised of approximately 310 residues, forms a tetratrico peptide repeat (TPR) zone. The third region is a 675 residue long all beta sheet and loops zone with as many as 35 strands and only 2 helices, shared by Gryzun-domain containing proteins. It is likely to form two or three beta sheet sandwiches. The TPR regions of many proteins tend to bind to the peptides from disordered regions of other proteins. Many of the 16 potential binding proteins have high levels of disorder. These data suggest that the TPR region in NIBP most likely binds with many of these 16 proteins through peptides and other domains. It is also possible that the Sybindin-like domain and the Gryzun-like domain containing beta sheet sandwiches bind to some of these proteins.
机译:NIBP是新型蛋白质家族的原型成员。它形成了NIK-NIBP-IKKβ的新型亚复合物,并增强了细胞因子诱导的IKKβ介导的NFκB活化。它也被称为TRAPPC9,是运输颗粒蛋白(TRAPP)复合物II的关键成员,这在反高尔基体网络(TGN)中至关重要。 NIBP动作的信号传导途径和分子机制仍然未知。;本研究的目的是鉴定与NIBP相互作用的潜在蛋白质,从而调节NFκB信号传导途径和其他未知的信号传导途径。在天普大学神经科学系胡文辉博士的实验室中,通过实验鉴定了16种可能与NIBP结合的伴侣蛋白。NIBP是一种新型蛋白质,没有进入蛋白质数据库。从计算和生物信息学的角度来看,我们使用二级结构和蛋白质失调的预测以及基于同源性的结构建模方法来创建关于NIBP与伴侣蛋白质之间蛋白质相互作用的假设。在结构上,NIBP包含三个不同的区域。第一个区域由200个氨基酸组成,形成了一个杂螺旋和基于β折叠的域,可能类似于Sybindin域。由大约310个残基组成的第二个区域,形成四三肽重复(TPR)区。第三个区域是一个长675个残基的所有β折叠和环带,多达35条链,只有2个螺旋,由含有Gryzun域的蛋白质共享。它很可能形成两个或三个beta板三明治。许多蛋白质的TPR区倾向于与其他蛋白质无序区的肽结合。 16种潜在的结合蛋白中有许多具有高水平的紊乱。这些数据表明,NIBP中的TPR区很可能通过肽和其他结构域与这16种蛋白质中的许多结合。含有Sybindin样结构域和Gryzun样结构域的β折叠三明治也可能与其中一些蛋白质结合。

著录项

  • 作者

    Adhikari, Sombudha.;

  • 作者单位

    Temple University.;

  • 授予单位 Temple University.;
  • 学科 Biology Neuroscience.;Biology Bioinformatics.;Engineering Biomedical.
  • 学位 M.S.
  • 年度 2013
  • 页码 41 p.
  • 总页数 41
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:41:00

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