Rigden Daniel J, Littlejohn James E, Joshi Harshad V, de Groot Bert L, Jedrzejas Mark J
Children's Hospital Oakland Research Institute, Oakland, CA 94609, USA.
J Mol Biol. 2006 May 12;358(4):1165-78. doi: 10.1016/j.jmb.2006.02.066. Epub 2006 Mar 13.
Streptococcus pneumoniae hyaluronan lyase is a surface enzyme of this Gram-positive bacterium. The enzyme degrades several biologically important, information-rich linear polymeric glycans: hyaluronan, unsulfated chondroitin, and some chondroitin sulfates. This degradation facilitates spreading of bacteria throughout the host tissues and presumably provides energy and a carbon source for pneumococcal cells. Its beta-elimination catalytic mechanism is an acid/base process termed proton acceptance and donation leading to cleavage of beta-1,4 linkages of the substrates. The degradation of hyaluronan occurs in two stages, initial endolytic cuts are followed by processive exolytic cleavage of one disaccharide at a time. In contrast, the degradation of chondroitins is purely endolytic. Structural studies together with flexibility analyses of two streptococcal enzymes, from S.pneumoniae and Streptococcus agalactiae, allowed for insights into this enzyme's molecular mechanism. Here, two new X-ray crystal structures of the pneumococcal enzyme in novel conformations are reported. These new conformations, complemented by molecular dynamics simulation results, directly confirm the predicted domain motions presumed to facilitate the processive degradative process. One of these new structures resembles the S.agalactiae enzyme conformation, and provides evidence of a uniform mechanistic/dynamic behavior of this protein across different bacteria.
肺炎链球菌透明质酸酶是这种革兰氏阳性细菌的一种表面酶。该酶可降解几种具有重要生物学意义、富含信息的线性聚合聚糖:透明质酸、未硫酸化的软骨素和一些硫酸软骨素。这种降解有助于细菌在宿主组织中扩散,并可能为肺炎球菌细胞提供能量和碳源。其β-消除催化机制是一个酸/碱过程,称为质子接受和供体,导致底物的β-1,4键断裂。透明质酸的降解分两个阶段进行,首先是内切切割,然后是逐个二糖的外切降解。相比之下,软骨素的降解则完全是内切的。对来自肺炎链球菌和无乳链球菌的两种链球菌酶进行结构研究并结合灵活性分析,有助于深入了解该酶的分子机制。在此,报道了肺炎球菌酶两种新的处于新构象的X射线晶体结构。这些新构象,辅以分子动力学模拟结果,直接证实了推测有助于进行性降解过程的预测结构域运动。其中一种新结构类似于无乳链球菌酶的构象,并提供了该蛋白在不同细菌中具有统一机制/动态行为的证据。