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昆虫毒素蛋白 GNIP1Aa 的结构-功能特征研究,该蛋白属于 MACPF 和 β-三叶结构域家族成员。

Structure-function characterization of an insecticidal protein GNIP1Aa, a member of an MACPF and β-tripod families.

机构信息

Agricultural Solutions, BASF, Morrisville, NC 27560;

Agricultural Solutions, BASF, Morrisville, NC 27560.

出版信息

Proc Natl Acad Sci U S A. 2019 Feb 19;116(8):2897-2906. doi: 10.1073/pnas.1815547116. Epub 2019 Feb 6.

Abstract

The crystal structure of the Gram-negative insecticidal protein, GNIP1Aa, has been solved at 2.5-Å resolution. The protein consists of two structurally distinct domains, a MACPF (membrane attack complex/PerForin) and a previously uncharacterized type of domain. GNIP1Aa is unique in being a prokaryotic MACPF member to have both its structure and function identified. It was isolated from a strain and is specifically toxic to larvae upon feeding. In members of the MACPF family, the MACPF domain has been shown to be important for protein oligomerization and formation of transmembrane pores, while accompanying domains define the specificity of the target of the toxicity. In GNIP1Aa the accompanying C-terminal domain has a unique fold composed of three pseudosymmetric subdomains with shared sequence similarity, a feature not obvious from the initial sequence examination. Our analysis places this domain into a protein family, named here β-tripod. Using mutagenesis, we identified functionally important regions in the β-tripod domain, which may be involved in target recognition.

摘要

革兰氏阴性杀虫蛋白 GNIP1Aa 的晶体结构已解析至 2.5Å 分辨率。该蛋白由两个结构上截然不同的结构域组成,一个 MACPF(膜攻击复合物/穿孔素)和一个以前未表征的结构域。GNIP1Aa 是唯一一种具有结构和功能鉴定的原核 MACPF 成员。它是从一株 中分离出来的,在喂食时对 幼虫具有特异性毒性。在 MACPF 家族成员中,MACPF 结构域已被证明对蛋白质寡聚化和形成跨膜孔很重要,而伴随的结构域则定义了毒性的靶标特异性。在 GNIP1Aa 中,伴随的 C 端结构域具有独特的折叠结构,由三个具有共享序列相似性的准对称亚结构域组成,这一特征在初始序列分析中并不明显。我们的分析将该结构域置于一个名为 β-三脚架的蛋白质家族中。通过诱变,我们确定了 β-三脚架结构域中具有重要功能的区域,这些区域可能与靶标识别有关。

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