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首页> 外文期刊>Integrative Biosciences >Glu-56 in Htrl is Critical for Phototaxis Signaling in Halobacterium salinarum
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Glu-56 in Htrl is Critical for Phototaxis Signaling in Halobacterium salinarum

机译:Htrl中的Glu-56对于盐藻中的趋光性信号至关重要

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摘要

The attractant (orange light) or repellent (white light) signal is transmitted from SRI (Sensory Rhodopsin I) via protein-protein interaction with its transducer Htrl (Halobacterial Transducer for Sensory Rhodopsin I) which in turn controls a cytoplasmic phospho-transfer pathway that modulates flagella motor switching in Halobacterium salinarum. Some mutations in both SRI and Htrl showed an unusual mutant phenotype called inverted signaling, in which the cell produces a repellent response to normallyattractant light. Twelve mutations at the Glutamate 56 (E56) position in the second transmembrane helix of Htrl were introduced by site-specific random mutagenesis. Almost all E56 mutants showed orange-light inverted responses in pH and temperature-dependent manners except E56D and E56Y. Except for these two mutants, all mutants accelerated the S_(373) decay compared to wild-type at 18 deg C. This supported that there is an interaction between SRI and the second transmembrane of Htrl. Also a structuralmodel of Htrl based on the Tar crystal structure and the secondary structure prediction program proposed the E56 residue to be in the middle of the proton channel. The most important observation is that the E56 mutant provides the evidence that this residue is very sensitive for signal relay, which can be explained by the open and closed conformations of the channel (A and R conformations) in SRI, as was postulated by the unified conformational shuttling model for transport and signaling.
机译:诱集性信号(橙色光)或驱避性信号(白光)通过与其换能器Htrl(感性视紫红质I的卤代细菌换能器)之间的蛋白质相互作用从SRI(感性视紫红质I)传输,进而控制细胞质的磷酸转移途径,调节盐杆菌中鞭毛马达的开关。 SRI和Htrl中的某些突变均表现出一种异常的突变表型,称为倒转信号,其中细胞对正常的光产生排斥反应。通过位点特异性随机诱变在Htrl的第二个跨膜螺旋中谷氨酸56(E56)位置的十二个突变被引入。除E56D和E56Y外,几乎所有E56突变体均以pH和温度依赖性方式表现出橙黄色的反向响应。除了这两个突变体,与野生型相比,所有突变体均在18℃时加速了S_(373)的衰变。这支持SRI与Htrl的第二个跨膜之间存在相互作用。此外,基于焦油晶体结构和二级结构预测程序的Htrl结构模型提出,E56残基位于质子通道的中间。最重要的观察结果是,E56突变体提供了该残基对信号中继非常敏感的证据,这可以通过SRI中SRI通道的开放和闭合构象(A和R构象)来解释,这是由统一理论所假设的用于传输和信令的构象穿梭模型。

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