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肺炎链球菌荚膜生物合成所需的自磷酸化酪氨酸激酶CpsD的羧基末端(YGX)4重复结构域的突变分析。

Mutational analysis of the carboxy-terminal (YGX)4 repeat domain of CpsD, an autophosphorylating tyrosine kinase required for capsule biosynthesis in Streptococcus pneumoniae.

作者信息

Morona Judy K, Morona Renato, Miller David C, Paton James C

机构信息

School of Molecular and Biomedical Science, University of Adelaide, Adelaide, South Australia 5005, Australia.

出版信息

J Bacteriol. 2003 May;185(10):3009-19. doi: 10.1128/JB.185.10.3009-3019.2003.

Abstract

In Streptococcus pneumoniae, CpsB, CpsC, and CpsD are essential for encapsulation, and mutants containing deletions of cpsB, cpsC, or cpsD exhibit rough colony morphologies. CpsD is an autophosphorylating protein-tyrosine kinase, CpsC is required for CpsD tyrosine phosphorylation, and CpsB is a phosphotyrosine-protein phosphatase. We have previously shown that autophosphorylation of CpsD at tyrosine attenuates its activity and consequently reduces the level of encapsulation and negatively regulates CPS production. In this study, we further investigated the role of the carboxy-terminal (YGX)(4) repeat domain of CpsD in encapsulation. A CpsD truncation mutant in which the entire (YGX)(4) repeat domain was removed was indistinguishable from a strain in which the entire cpsD gene had been deleted, indicating that the carboxy-terminal (YGX)(4) tail is required for CpsD activity in capsular polysaccharide production. Double mutants having a single tyrosine residue at position 2, 3, or 4 in the (YGX)(4) repeat domain and lacking CpsB exhibited a rough colony morphology, indicating that in the absence of an active protein-tyrosine phosphatase, phosphorylation of just one of the tyrosine residues in the (YGX)(4) repeat was sufficient to inactivate CpsD. When various mutants in which CpsD had either one or combinations of two or three tyrosine residues in the (YGX)(4) repeat domain were examined, only those with three tyrosine residues in the (YGX)(4) repeat domain were indistinguishable from the wild-type strain. The mutants with either one or two tyrosine residues exhibited mucoid colony morphologies. Further analysis of the mucoid strains indicated that the mucoid phenotype was not due to overproduction of capsular polysaccharide, as these strains actually produced less capsular polysaccharide than the wild-type strain. Thus, the tyrosine residues in the (YGX)(4) repeat domain are essential for normal functioning of CpsD.

摘要

在肺炎链球菌中,CpsB、CpsC和CpsD对荚膜形成至关重要,含有cpsB、cpsC或cpsD缺失的突变体表现出粗糙的菌落形态。CpsD是一种自磷酸化蛋白酪氨酸激酶,CpsC是CpsD酪氨酸磷酸化所必需的,而CpsB是一种磷酸酪氨酸蛋白磷酸酶。我们之前已经表明,CpsD在酪氨酸位点的自磷酸化会减弱其活性,从而降低荚膜形成水平并对荚膜多糖(CPS)的产生产生负调控。在本研究中,我们进一步研究了CpsD的羧基末端(YGX)4重复结构域在荚膜形成中的作用。一个缺失了整个(YGX)4重复结构域的CpsD截短突变体与一个缺失了整个cpsD基因的菌株没有区别,这表明羧基末端(YGX)4尾巴是CpsD在荚膜多糖产生中的活性所必需的。在(YGX)4重复结构域的第2、3或4位具有单个酪氨酸残基且缺乏CpsB的双突变体表现出粗糙的菌落形态,这表明在没有活性蛋白酪氨酸磷酸酶的情况下,(YGX)4重复结构域中仅一个酪氨酸残基的磷酸化就足以使CpsD失活。当检测在(YGX)4重复结构域中具有一个或两个或三个酪氨酸残基组合的各种CpsD突变体时,只有那些在(YGX)4重复结构域中具有三个酪氨酸残基的突变体与野生型菌株没有区别。具有一个或两个酪氨酸残基的突变体表现出黏液状菌落形态。对黏液状菌株的进一步分析表明,黏液状表型不是由于荚膜多糖的过量产生,因为这些菌株实际上产生的荚膜多糖比野生型菌株少。因此,(YGX)4重复结构域中的酪氨酸残基对于CpsD的正常功能至关重要。

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