标题: 克雷白氏肺炎杆菌CG43中磷酸甘露糖异构酶磷酸化的特性探讨
Characterization of the ManB phosphorylation in Klebsiella pneumoniae CG43
作者: 万举豪
Wan, Chu-Hao
彭慧玲
Peng, Hwei-Ling
生物科技学系
关键字: 克雷白氏肺炎菌;磷酸化;Klebsiella pneumoniae;phosphorylation
公开日期: 2011
摘要: 细菌酪胺酸激酶是近年来新建立的蛋白质家族,与真核生物之酪胺酸激酶有着
相似的功能。活体外磷酸化实验证明克雷白氏肺炎菌 CG43 之酪胺酸激酶 Wzc
可以将多醣荚膜基因座上之基因产物包括 6-葡萄醣醛酸脱氢酶 Gnd、甘露糖-1-
磷酸鸟苷醯基转移酶 ManC 及磷酸甘露糖异构酶 ManB 磷酸化,并增加 Gnd 之
酵素活性。本实验建构克雷白氏肺炎菌 CG43 突变株 Δgnd、ΔmanC 与 ΔmanB
并分析基因缺失的影响,结果发现 ΔmanC 与 ΔmanB 之多醣荚膜合成量明显下降而生物膜生成增加,为了证实 ManB 活性与酪胺酸残基磷酸化的关系,我们藉由比对分析选出可能受磷酸化的酪胺酸残基做定点突变,接着回补实验分析发现
manB 基因剔除所造成的多醣荚膜含量下降可藉转殖 ΔmanB 予表现质体
pRK415-manB、pRK415- manBY26F 或 pRK415-manB Y341F 而回补。然而
pRK415-manBY10F 仅能回复些微多醣荚膜含量,此暗示着 Tyr10 可能影响 ManB
之活性。而分析全菌裂解液之 ManB 酵素活性发现 Y10F、Y26F 及 Y341F 突变
会降低 ManB 酵素活性而以 Y10F 下降程度最大;另外,S98A 突变使 ManB 丧
失活性。进一步,在大肠杆菌中大量表现这些重组蛋白,以圆双色光谱分析这些
纯化的重组蛋白证实这些酪胺酸残基突变并不影响 ManB 之二级结构,我们推测
Y10F 可能因降低 ManB 与受质的结合力而影响其催化活性,而 S98 的磷酸化决
定其酵素活性。最后,活体外磷酸化实验显示单株抗体和 Pro-Q Diamond 均可侦测 ManB 的磷酸化,ManB 的磷酸化些微提升其酵素活性;而 S98A 突变使
ManB 不被磷酸化且活性丧失,而其磷酸化不受酪胺酸激酶或丝胺酸-苏胺酸激酶
的基因缺损影响。
Bacterial tyrosine kinases have been recently unified in a new enzyme family because of the similar structural and functional features with their eukaryotic counterparts. Via an in vitro phosphorylation assay, the protein-tyrosine kinase Wzc of Klebsiella pneumoniae CG43 was shown capable of phosphorylating the capsular polysaccharide biosynthesis operon cps gene products 6-phosphogluconate
dehydrogenase (Gnd), GDP-mannose phosphorylase (ManC) and
phosphomannomutase (ManB) and the phosphorylation leading to increase of the enzymatic activities. In this study, we generate CG43S3Δgnd, CG43S3ΔmanC and CG43S3ΔmanB mutants and the phenotypes analyzed and compared. The analysis revealed that deletion of manC or manB decreased the glucuronic acid production but increased the biofilm formation. Several of the ManB tyrosine residues were then selected for site directed mutagensis in order to determine which is the one that subjected to Wzc phosphorylation and if the phosphorylation influences the enzymztic activity. The subsequent complementation analysis revealed that the manB deleting effect could be complemented by introducing into the mutant with the ManB expression plasmid pRK415-manB or the plasmid pRK415-manBY26F and pRK415-manBY341F which carrying a point mutation of ManB.Whereas the bacteria CG43S3ΔmanB carrying pRK415-manBY10F exhibited a partially restored phenotype implying the phosphorylation on tyrosine residue 10 of ManB was critical for the enzymatic activity. In addition, the ManB activity was decreased in the bacteria CG43S3ΔmanB [pETQ33-manBY10F] or CG43S3ΔmanB [pETQ33-manBY341F] by comparing to that in CG43S3ΔmanB [pETQ33-manB ] or CG43S3ΔmanB [pETQ33- manBY26F]. These recombinant plasmids were then overexpressed in E. coli BL21[DE3] and the recombinant proteins purified. The circular dichroism spectra analysis of the purified proteins revealed that the site directed mutation had no effect on the secondary structure. Finally, the in virto phosphorylation assay showed that the monoclonal antibody and Pro-Q Diamond were able to detect the ManB phosphorylation form and ManB phosphorylation slightly enhanced the enzymatic activity. In addition, the S98 was found to be a critical phosphorylation residue which is required for the enzyme activity. However,the serine phosphorylation was not afftected by the deletion of wzc or stk.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT079928529
http://hdl.handle.net/11536/49970
显示于类别:Thesis


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