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裂解活葡萄球菌细胞需要LysK CHAP内肽酶结构域。

LysK CHAP endopeptidase domain is required for lysis of live staphylococcal cells.

作者信息

Becker Stephen C, Dong Shengli, Baker John R, Foster-Frey Juli, Pritchard David G, Donovan David M

机构信息

Animal Biosciences and Biotechnology Laboratory, Animal and Natural Resources Institute, BARC, ARS, USDA, Beltsville, MD 20705-2350, USA.

出版信息

FEMS Microbiol Lett. 2009 May;294(1):52-60. doi: 10.1111/j.1574-6968.2009.01541.x. Epub 2008 Mar 10.

Abstract

LysK is a staphylococcal bacteriophage endolysin composed of three domains: an N-terminal cysteine, histidine-dependent amidohydrolases/peptidases (CHAP) endopeptidase domain, a midprotein amidase 2 domain, and a C-terminal SH3b_5 (SH3b) cell wall-binding domain. Both catalytic domains are active on purified peptidoglycan by positive-ion electrospray ionization MS. The cut sites are identical to LytA (phi11 endolysin), with cleavage between d-alanine of the stem peptide and glycine of the cross-bridge peptide, and N-acetylmuramoyl-l-alanine amidase activity. Truncations of the LysK containing just the CHAP domain lyse Staphylococcus aureus cells in zymogram analysis, plate lysis, and turbidity reduction assays but have no detectable activity in a minimal inhibitory concentration (MIC) assay. In contrast, truncations harboring just the amidase lytic domain show faint activity in both the zymogram and turbidity reduction assays, but no detectable activity in either plate lysis or MIC assays. A fusion of the CHAP domain to the SH3b domain has near full-length LysK lytic activity, suggesting the need for a C-terminal binding domain. Both LysK and the CHAP-SH3b fusion were shown to lyse untreated S. aureus and the coagulase-negative strains. In the checkerboard assay, the CHAP-SH3b fusion achieves the same level of antimicrobial synergy with lysostaphin as the full-length LysK.

摘要

LysK是一种葡萄球菌噬菌体溶菌酶,由三个结构域组成:一个N端半胱氨酸、组氨酸依赖性酰胺水解酶/肽酶(CHAP)内切肽酶结构域、一个中间蛋白酰胺酶2结构域和一个C端SH3b_5(SH3b)细胞壁结合结构域。通过正离子电喷雾电离质谱分析,两个催化结构域对纯化的肽聚糖均有活性。切割位点与LytA(phi11溶菌酶)相同,在茎肽的d-丙氨酸和交联肽的甘氨酸之间进行切割,并具有N-乙酰胞壁酰-L-丙氨酸酰胺酶活性。在酶谱分析、平板裂解和浊度降低试验中,仅含有CHAP结构域的LysK截短体可裂解金黄色葡萄球菌细胞,但在最低抑菌浓度(MIC)试验中未检测到活性。相比之下,仅含有酰胺酶裂解结构域的截短体在酶谱分析和浊度降低试验中显示出微弱活性,但在平板裂解或MIC试验中均未检测到活性。CHAP结构域与SH3b结构域的融合体具有接近全长LysK的裂解活性,这表明需要一个C端结合结构域。LysK和CHAP-SH3b融合体均显示可裂解未处理的金黄色葡萄球菌和凝固酶阴性菌株。在棋盘试验中,CHAP-SH3b融合体与溶葡萄球菌素达到了与全长LysK相同水平的抗菌协同作用。

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