果蝇Serpin 42 Da的高分辨率结构

Q3 Biochemistry, Genetics and Molecular Biology BMC Structural Biology Pub Date : 2014-04-24 DOI:10.1186/1472-6807-14-14
Andrew M Ellisdon, Qingwei Zhang, Michelle A Henstridge, Travis K Johnson, Coral G Warr, Ruby HP Law, James C Whisstock
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引用次数: 16

摘要

黑腹果蝇Serpin 42?Da基因(以前的Serpin 4)编码一种丝氨酸蛋白酶抑制剂,通过四个不同的反应性中心环外显子的选择性剪接,具有显著的功能多样性。Serpin 42的8种蛋白同工型?到目前为止,已经确定了Da,将蛋白酶抑制剂靶向于不同的蛋白酶和细胞位置。生物化学和遗传学研究表明,Serpin 42?Da通过经典的serpin“自杀”抑制机制抑制目标蛋白酶,然而具有代表性的serpin 42?Da的异构体还有待确定。我们报告了两个高分辨率的Serpin 42晶体结构?Da代表裂解构象中的A/B异构体,属于两个不同的空间群,衍射为1.7??和1.8 ? ?。结构分析揭示了原型蛇形蛋白折叠,二级结构的主要元素与脊椎动物蛇形蛋白神经蛇形蛋白具有显著的同源性。已知在serpin抑制机制中起核心作用的关键残基在serpin 42da的铰链区和关闭区都是保守的。此外,这些结构确定了重要的保守相互作用,这些相互作用似乎对允许Serpin 42?Da折叠作为具有不同序列和蛋白酶特异性的多个反应性中心环的通用模板。结合之前的生物化学和遗传学研究,这些结构首次证实了Serpin 42?Da亚型是典型的抑制性蛇形蛋白家族成员,具有保守的蛇形蛋白折叠和抑制机制。此外,这些数据揭示了蛇蛋白显著的结构可塑性,即基本折叠被利用为通过反应性中心环外显子“开关”抑制大量蛋白酶的模板。这是迄今为止报道的首个果蝇serpin结构,并将为未来果蝇的突变研究提供一个平台,以确定每个serpin 42?Da亚型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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High resolution structure of cleaved Serpin 42 Da from Drosophila melanogaster

The Drosophila melanogaster Serpin 42?Da gene (previously Serpin 4) encodes a serine protease inhibitor that is capable of remarkable functional diversity through the alternative splicing of four different reactive centre loop exons. Eight protein isoforms of Serpin 42?Da have been identified to date, targeting the protease inhibitor to both different proteases and cellular locations. Biochemical and genetic studies suggest that Serpin 42?Da inhibits target proteases through the classical serpin ‘suicide’ inhibition mechanism, however the crystal structure of a representative Serpin 42?Da isoform remains to be determined.

We report two high-resolution crystal structures of Serpin 42?Da representing the A/B isoforms in the cleaved conformation, belonging to two different space-groups and diffracting to 1.7?? and 1.8??. Structural analysis reveals the archetypal serpin fold, with the major elements of secondary structure displaying significant homology to the vertebrate serpin, neuroserpin. Key residues known to have central roles in the serpin inhibitory mechanism are conserved in both the hinge and shutter regions of Serpin 42?Da. Furthermore, these structures identify important conserved interactions that appear to be of crucial importance in allowing the Serpin 42?Da fold to act as a versatile template for multiple reactive centre loops that have different sequences and protease specificities.

In combination with previous biochemical and genetic studies, these structures confirm for the first time that the Serpin 42?Da isoforms are typical inhibitory serpin family members with the conserved serpin fold and inhibitory mechanism. Additionally, these data reveal the remarkable structural plasticity of serpins, whereby the basic fold is harnessed as a template for inhibition of a large spectrum of proteases by reactive centre loop exon ‘switching’. This is the first structure of a Drosophila serpin reported to date, and will provide a platform for future mutational studies in Drosophila to ascertain the functional role of each of the Serpin 42?Da isoforms.

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来源期刊
CiteScore
3.60
自引率
0.00%
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0
审稿时长
>12 weeks
期刊介绍: BMC Structural Biology is an open access, peer-reviewed journal that considers articles on investigations into the structure of biological macromolecules, including solving structures, structural and functional analyses, and computational modeling.
期刊最新文献
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