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戈登链球菌中一种依赖结合脂蛋白的寡肽转运系统,对六肽和七肽的摄取至关重要。

A binding-lipoprotein-dependent oligopeptide transport system in Streptococcus gordonii essential for uptake of hexa- and heptapeptides.

作者信息

Jenkinson H F, Baker R A, Tannock G W

机构信息

Department of Oral Biology and Oral Pathology, University of Otago, Dunedin, New Zealand.

出版信息

J Bacteriol. 1996 Jan;178(1):68-77. doi: 10.1128/jb.178.1.68-77.1996.

Abstract

Cells of the oral bacterium Streptococcus gordonii express three cytoplasmic membrane-bound lipoproteins with apparent molecular masses of 76 to 78 kDa that are the products of three genes (designated hppA, hppG, and hppH). The lipoproteins are immunologically cross-reactive, contain 60% or more identical amino acid residues, and are highly similar to the AmiA, AliA (PlpA), and AliB substrate-binding protein components of an oligopeptide permease in Streptococcus pneumoniae. Insertional inactivation of the hppA or hppH gene resulted in loss of the ability of S. gordonii cells to utilize specific peptides of five to seven amino acid residues for growth. An insertion within the COOH-terminal coding region of hppG that caused apparent truncation of the HppG polypeptide had a similar effect; however, S. gordonii mutants in which HppG polypeptide production was abolished were still able to grow on all oligopeptides tested. Inactivation of hppA gene (but not inactivation of the hppG or hppH gene) caused reduced growth rate of cells in complex medium, slowed the rate of development of competence for transformation, reduced the efficiency of transformation, and increased the resistance of cells to aminopterin. These results suggest that the formation of a solute-binding-protein complex consisting of at least the HppA and the HppH lipopolypeptides is necessary for binding and subsequent uptake of primarily hexa- or heptapeptides by a Hpp (Hexa-heptapeptide permease) system in S. gordonii. In addition, Hpp may play a role in the control of metabolic functions associated with the growth of streptococcal cells on complex nitrogen sources and with the development of competence.

摘要

口腔细菌戈登氏链球菌的细胞表达三种细胞质膜结合脂蛋白,其表观分子量为76至78 kDa,是三个基因(分别命名为hppA、hppG和hppH)的产物。这些脂蛋白具有免疫交叉反应性,含有60%或更多相同的氨基酸残基,并且与肺炎链球菌中一种寡肽通透酶的AmiA、AliA(PlpA)和AliB底物结合蛋白成分高度相似。hppA或hppH基因的插入失活导致戈登氏链球菌细胞失去利用五到七个氨基酸残基的特定肽进行生长的能力。hppG的COOH末端编码区域内的一个插入导致HppG多肽明显截短,产生了类似的效果;然而,HppG多肽产生被消除的戈登氏链球菌突变体仍然能够在所有测试的寡肽上生长。hppA基因的失活(而不是hppG或hppH基因的失活)导致细胞在复杂培养基中的生长速率降低,减缓了转化感受态的发育速率,降低了转化效率,并增加了细胞对氨基蝶呤的抗性。这些结果表明,由至少HppA和HppH脂多肽组成的溶质结合蛋白复合物的形成对于戈登氏链球菌中Hpp(六 - 七肽通透酶)系统结合并随后摄取主要是六肽或七肽是必要的。此外,Hpp可能在控制与链球菌细胞在复杂氮源上生长以及感受态发育相关的代谢功能中发挥作用。

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引用本文的文献

本文引用的文献

1
On the nature of competence of transformable streptococci.关于可转化链球菌的能力性质。
J Gen Microbiol. 1963 Apr;31:125-33. doi: 10.1099/00221287-31-1-125.

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