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Amino Acid Substitutions in Transmembrane Domains 9 and 10 of GerVB That Affect the Germination Properties of Bacillus megaterium Spores▿

机译:GerVB跨膜域9和10中的氨基酸取代影响巨大芽孢杆菌孢子的萌发特性

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摘要

The molecular basis for differences in germinant recognition of Bacillus megaterium QM B1551 spores containing the GerVB and/or GerUB receptor proteins has been examined by site-directed mutagenesis and the construction of cross-homologue chimeras. Focusing on nonconserved residues predicted to reside in transmembrane domains 9 and 10, we demonstrate that GerVB residues Ser319 and Leu345 are of particular importance in defining the specificity and apparent affinity of the receptor for germinants. Kinetic analyses of mutants with different amino acid substitutions at these positions indicate that Ser319 and Leu345 are not involved directly in the binding of germinants, but probably reside in regions of the receptor where structural perturbations can affect the conformation of, or access to, germinant binding sites. Position 345 is also shown to be of importance in GerUB, where the F345A mutation severely impairs receptor function. Functionality is restored in the GerUB Ala345 background by substituting putative outer-loop residues adjacent to TM10 for the corresponding residues in GerVB, indicating that a degree of structural coordination between these regions is important to receptor function.
机译:已通过定点诱变和跨同源嵌合体的构建检查了含有GerVB和/或GerUB受体蛋白的巨大芽孢杆菌QM B1551芽孢的萌发性识别差异的分子基础。着眼于预计驻留在跨膜结构域9和10中的非保守残基,我们证明GerVB残基Ser319和Leu345在定义受体对发芽子的特异性和表观亲和力方面特别重要。在这些位置具有不同氨基酸取代的突变体的动力学分析表明,Ser319和Leu345不直接参与发芽剂的结合,但可能位于受体的区域,在该区域中结构扰动可能会影响发芽剂结合的构象或可及性网站。位置345在GerUB中也很重要,F345A突变严重损害受体功能。通过用与TM10相邻的推定外环残基取代GerVB中的相应残基,可以在GerUB Ala345背景中恢复功能,这表明这些区域之间的结构协调程度对于受体功能很重要。

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