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人程序性细胞死亡蛋白5的N端26个氨基酸残基片段可形成具有独特静电势特征的稳定α螺旋。

The N-terminal 26-residue fragment of human programmed cell death 5 protein can form a stable alpha-helix having unique electrostatic potential character.

作者信息

Liu Dongsheng, Yao Hongwei, Chen Yaoyao, Feng Yingang, Chen Yingyu, Wang Jinfeng

机构信息

National Laboratory of Biomacromolecules, Center for Molecular Biology, Institute of Biophysics, Chinese Academy of Sciences, 15 Datun Road, Beijing 100101, China.

出版信息

Biochem J. 2005 Nov 15;392(Pt 1):47-54. doi: 10.1042/BJ20050688.

Abstract

PDCD5-(1-26) is a N-terminal 26-residue fragment of human PDCD5 (programmed cell death 5) protein. PDCD5 is an important novel protein that regulates both apoptotic and non-apoptotic programmed cell death. The conformation of PDCD5 protein is a stable helical core consisting of a triple-helix bundle and two dissociated terminal regions. The N-terminal region is ordered and contains abundant secondary structure. Overexpression and purification of the N-terminal 26-residure fragment, PDCD5-(1-26), was performed in this study to better understand its tertiary structure. The spectroscopic studies using CD and hetero- and homo-nuclear NMR methods determine a stable alpha-helix formed by Asp3-Ala19 of PDCD5-(1-26). The N-terminal residues Asp3-Ala19 of PDCD5 were then affirmed to have the capacity to form a stable alpha-helix independently of the core of the protein. Analysis of the helical peptide of PDCD5-(1-26) indicates that the surface of this well-formed alpha-helix has a unique electrostatic potential character. This may provide an environment for the N-terminal alpha-helix of PDCD5 to serve as an independent functional entity of the protein. The apoptosis activity assay shows that the deletion of the N-terminal alpha-helix of PDCD5 significantly attenuates the apoptosis-promoting effects on HL-60 cells induced by serum withdrawal.

摘要

PDCD5-(1-26) 是人类PDCD5(程序性细胞死亡5)蛋白的N端26个氨基酸残基的片段。PDCD5是一种重要的新型蛋白质,可调节凋亡性和非凋亡性程序性细胞死亡。PDCD5蛋白的构象是一个稳定的螺旋核心,由一个三螺旋束和两个解离的末端区域组成。N端区域有序且含有丰富的二级结构。本研究对N端26个氨基酸残基的片段PDCD5-(1-26)进行了过表达和纯化,以更好地了解其三级结构。使用圆二色光谱(CD)以及异核和同核核磁共振方法进行的光谱研究确定了PDCD5-(1-26)的Asp3-Ala19形成了一个稳定的α螺旋。随后证实PDCD5的N端残基Asp3-Ala19能够独立于蛋白质核心形成稳定的α螺旋。对PDCD5-(1-26)的螺旋肽分析表明,这种结构良好的α螺旋表面具有独特的静电势特征。这可能为PDCD5的N端α螺旋作为蛋白质的独立功能实体提供一个环境。凋亡活性测定表明,PDCD5的N端α螺旋缺失显著减弱了血清剥夺诱导的对HL-60细胞的促凋亡作用。

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