Suppr超能文献

家蝇溶菌酶c的晶体结构,这是首个消化性溶菌酶的结构。

The crystal structure of a lysozyme c from housefly Musca domestica, the first structure of a digestive lysozyme.

作者信息

Cançado Fabiane Chaves, Valério Amanda Abdalla, Marana Sandro Roberto, Barbosa João Alexandre Ribeiro Gonçalves

机构信息

Departamento de Bioquímica, Instituto de Química, Universidade de São Paulo, CP 26077, São Paulo, SP 05513-970, Brazil.

出版信息

J Struct Biol. 2007 Oct;160(1):83-92. doi: 10.1016/j.jsb.2007.07.008. Epub 2007 Jul 28.

Abstract

Lysozymes from family 22 of glycoside hydrolases are usually part of the defense system against bacteria. However in ruminant artiodactyls and saprophagous insects, lysozymes are involved in the digestion of bacteria. Here, we report the first crystallographic structure of a digestive lysozyme in its native and complexed forms, the structure of lysozyme 1 from Musca domestica larvae midgut (MdL1). Structural and biochemical data presented for MdL1 are analyzed in light of digestive lysozymes' traits. The structural core is similar, but a careful analysis of a structural alignment generated with other lysozymes c reveals that significant differences occur in coil regions. The loop from MdL1 defined by residues 98-100 has one deletion previous to residue Gln100, which leads to a less exposed conformation and might justify the resistance to proteolysis observed for MdL1. In addition, Gln100 is directly involved in a few hydrogen bonds to the ligand in a yet unobserved substrate binding mode. The pK(a)s of the MdL1 catalytic residues (Glu32 and Asp50) are lower (6.40 and 3.09, respectively) than those from Gallus gallus egg lysozyme (GgL, hen egg white lysozyme-HEWL) (6.61 and 3.85, respectively). A unique feature of MdL1 is a hydrogen bond between Thr107 Ogamma and Glu32 carboxylate group, which combined with the presence of Ser106 contributes to decrease the pK(a) of Glu32. Furthermore, in MdL1 the presence of Asn46 preventing the occurrence of an electrostatic repulsion with Asp50 and the increment in the solvent exposition of Asp50 due to Pro42 insertion contribute to reduce the pK(a) of Asp50. These structural elements affecting the pK(a)s of the catalytic residues should contribute to the acidic pH optimum presented by MdL1.

摘要

糖苷水解酶家族22的溶菌酶通常是抵御细菌的防御系统的一部分。然而,在反刍偶蹄动物和食腐昆虫中,溶菌酶参与细菌的消化过程。在此,我们报道了一种消化性溶菌酶天然形式和复合形式的首个晶体结构,即家蝇幼虫中肠溶菌酶1(MdL1)的结构。根据消化性溶菌酶的特性,对所呈现的MdL1的结构和生化数据进行了分析。其结构核心相似,但仔细分析与其他溶菌酶生成的结构比对结果发现,在卷曲区域存在显著差异。MdL1中由98 - 100位残基定义的环在Gln100残基之前有一个缺失,这导致其构象暴露程度较低,这可能解释了MdL1对蛋白水解的抗性。此外,Gln100以一种尚未观察到的底物结合模式直接参与了与配体的一些氢键形成。MdL1催化残基(Glu32和Asp50)的pKa值(分别为6.40和3.09)低于原鸡卵溶菌酶(GgL,鸡卵清溶菌酶 - HEWL)的pKa值(分别为6.61和3.85)。MdL1的一个独特特征是Thr107的Oγ与Glu32羧基之间存在氢键,这与Ser106的存在共同作用,降低了Glu32的pKa值。此外,在MdL1中,Asn46的存在阻止了与Asp50的静电排斥,并且由于Pro42的插入导致Asp50溶剂暴露增加,这有助于降低Asp50的pKa值。这些影响催化残基pKa值的结构元件应该有助于MdL1呈现酸性最适pH值。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验