首页> 美国卫生研究院文献>Journal of Bacteriology >Bacterioopsin haloopsin and sensory opsin I of the halobacterial isolate Halobacterium sp. strain SG1: three new members of a growing family.
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Bacterioopsin haloopsin and sensory opsin I of the halobacterial isolate Halobacterium sp. strain SG1: three new members of a growing family.

机译:盐细菌分离物Halobacterium sp。的细菌视蛋白盐环素和感觉视蛋白I。 SG1毒株:一个成长中的家庭的三个新成员。

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摘要

The genes coding for bacterioopsin, haloopsin, and sensory opsin I of a halobacterial isolate from the Red Sea called Halobacterium sp. strain SG1 have been cloned and sequenced. The deduced protein sequences were aligned to the previously known halobacterial retinal proteins. The addition of these new sequences lowered the number of conserved residues to only 23 amino acids, or 8% of the alignment. Data base searches with two highly conserved peptides as well as with an alignment profile yielded no significant similarity to any other protein, so the halobacterial retinal proteins should be regarded as a distinct protein family. The protein alignment was used to make predictions about the structure of the retinal proteins as well as about the amino acids in contact with retinal proteins. These results were in excellent agreement with the structural model of bacteriorhodopsin of Halobacterium halobium as well as with mutant studies, indicating that (i) structure predictions based on the sequences of a membrane protein family can be quite accurate; (ii) halorhodopsin and sensory rhodopsin I have tertiary structures similar to that of bacteriorhodopsin; (iii) conserved amino acids do not take part in reactions specific for one group of proteins, e.g., proton translocation for bacteriorhodopsins, but have a crucial role in determining the conformation and reactions of the chromophore; and (iv) the general mode of action (light-induced chromophore and protein movements) is the same for all halobacterial retinal proteins, ion pumps as well as sensors.
机译:来自红海的一种卤化细菌分离物,名为Halobacterium sp。的细菌视蛋白,盐环素和感觉视蛋白I的编码基因。菌株SG1已被克隆并测序。推导的蛋白质序列与先前已知的卤细菌视网膜蛋白质比对。这些新序列的添加将保守残基的数量降低至仅23个氨基酸,即比对的8%。用两个高度保守的肽以及比对谱进行的数据库搜索与其他任何蛋白质均无显着相似性,因此卤代视网膜蛋白应被视为一个独特的蛋白家族。蛋白比对用于预测视网膜蛋白的结构以及与视网膜蛋白接触的氨基酸。这些结果与Halobacterium halobium细菌视紫红质的结构模型以及突变研究非常吻合。 (ii)盐视紫红质和感觉视紫红质I具有类似于细菌视紫红质的三级结构; (iii)保守氨基酸不参与特定于一组蛋白质的反应,例如细菌视紫红质的质子转运,但在确定发色团的构象和反应中起关键作用; (iv)所有卤代视网膜蛋白,离子泵和传感器的一般作用方式(光生色团和蛋白质运动)是相同的。

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