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Functional Consequences of Amino Acid Substitutions to GerVB, a Component of the Bacillus megaterium Spore Germinant Receptor▿

机译:巨大的芽孢杆菌芽孢杆菌受体组成部分GerVB氨基酸取代的功能后果S

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摘要

The extreme metabolic dormancy and resistance properties of spores formed by members of the Bacillus and Clostridium genera are lost upon exposure to a variety of small-molecule germinants. Germinants are known to interact in an as yet undefined manner with cognate receptor complexes that reside in the inner membrane that surrounds the spore protoplast. The receptor itself is a complex of at least three proteins, and in this study we identify amino acid residues, predicted to lie in loop regions of GerVB on the exterior aspect of the membrane, that influence the Bacillus megaterium spore germination response. Three consecutive residues adjacent to putative transmembrane domain 10 (TM10) were demonstrated to mediate to various degrees the proline germinative response while also influencing germination in response to leucine, glucose, and inorganic salts, suggesting that this region may be part of a ligand binding pocket. Alternatively, substitutions in this region may affect the conformation of associated functionally important TM regions. Leucine- and KBr-mediated germination was also influenced by substitutions in other outer loop regions. These observations, when considered with accompanying kinetic analyses that demonstrate cooperativity between germinants, suggest that binding sites for the respective germinants are in close spatial proximity in the receptor but do not overlap. Additionally, proline recognition was conferred to a chimeric receptor when TM regions associated with the putative binding loop were present, indicating that residues in TM9 and/or TM10 of GerVB are also of functional importance in the proline-induced germinative response.
机译:芽孢杆菌属和梭状芽胞杆菌属成员形成的孢子的极端代谢休眠和抗性特性在暴露于各种小分子萌发剂后会消失。已知发芽细胞以尚未确定的方式与位于围绕孢子原生质体的内膜中的同源受体复合物相互作用。该受体本身是至少三种蛋白质的复合物,在这项研究中,我们确定了预计位于膜外表面GerVB环状区域中的氨基酸残基,这些残基会影响巨大芽孢杆菌的孢子萌发反应。已证明与推定的跨膜结构域10(TM10)相邻的三个连续残基在不同程度上介导脯氨酸的萌发反应,同时还影响对亮氨酸,葡萄糖和无机盐的响应的萌发,表明该区域可能是配体结合口袋的一部分。备选地,在该区域中的取代可影响相关的功能上重要的TM区域的构象。亮氨酸和KBr介导的萌发也受到其他外环区域取代的影响。当与伴随的动力学分析一起证明这些发芽剂之间具有协同作用时,这些观察结果表明,各个发芽剂的结合位点在受体中在空间上紧密接近,但并不重叠。另外,当存在与推定的结合环相关的TM区域时,将脯氨酸识别赋予嵌合受体,表明GerVB的TM9和/或TM10中的残基在脯氨酸诱导的萌发应答中也具有功能重要性。

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