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Examination of stability of mutant photosynthetic reaction center of Rhodobacter sphaeroides I(L177)H and determination of location of bacteriochlorophyll covalently bound to the protein

机译:球形球形红细菌I(L177)H突变体光合作用反应中心的稳定性检查和与该蛋白共价结合的细菌叶绿素的位置确定

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摘要

We demonstrated earlier that as a result of the I(L177)H mutation in the photosynthetic reaction center (RC) of the bacterium Rhodobacter sphaeroides, one of the bacteriochlorophylls (BChl) binds with the L-subunit, simultaneously raising coordination stability of the central magnesium atom of the bacteriochlorophyll associated with the protein. In this study, spectral properties of wild type RC and I(L177)H in the presence of urea and SDS as well as at 48° C were examined. It is shown that the I(L177)H mutation decreases the RC stability. Under denaturing conditions, some changes indicating breakdown of oligomeric structure of the complex and loss of interaction between pigments and their protein environment are observed in I(L177)H RC spectra. In addition, pheophytinization of bacteriochlorophylls occurs in both types of RC in the presence of SDS. However, an 811-nm band is observed in the spectrum of the mutant RC under these conditions, which indicates retention of one of the BChl molecules in the protein binding site and stable coordination of its central magnesium atom. It is shown that in both types of RC, monomeric BChl B^sub B^ can be modified by sodium borohydride treatment and then extracted by acetone-methanol mixture. Spectral properties of the BChl covalently bound with the protein in I(L177)H RC do not change. The results demonstrate that BChl P^sub A^ is the molecule of BChl tightly bound with the L-sub- unit in mutant RC as it was supposed earlier. [PUBLICATION ABSTRACT]
机译:较早前,我们证明了由于球形球形红细菌光合作用中心(RC)中的I(L177)H突变,一种细菌叶绿素(BChl)与L亚基结合,同时提高了中枢的协调稳定性与蛋白质相关的细菌叶绿素的镁原子。在这项研究中,研究了在尿素和SDS存在下以及在48°C下野生型RC和I(L177)H的光谱特性。结果表明,I(L177)H突变降低了RC稳定性。在变性条件下,在I(L177)H RC光谱中观察到一些变化,表明复合物的低聚物结构破裂,色素与蛋白质环境之间的相互作用丧失。此外,在存在SDS的两种类型的RC中,细菌叶绿素的脱镁叶绿素化。然而,在这些条件下,在突变RC的光谱中观察到811nm带,这表明BChl分子之一保留在蛋白结合位点中并且稳定了其中心镁原子的配位。结果表明,在两种类型的RC中,单体BChl B ^ sub B ^都可以通过硼氢化钠处理进行改性,然后通过丙酮-甲醇混合物萃取。与I(L177)H RC中的蛋白质共价结合的BChl的光谱性质不变。结果表明,BChl P ^ sub A ^是与突变体RC中的L-亚基紧密结合的BChl分子。 [出版物摘要]

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