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Probing native‐like orientation of pigments in modified reaction centers from Rhodobacter sphaeroides R26 by linear dichroism

机译:通过线性二色性研究球形红球菌R26在修饰的反应中心中色素的天然取向

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>Site-specific pigment modifications are useful to investigate structure-function relationships in photosynthesis. In reaction centers bearing modified (bacterio)pheophytins, changed electron transfer kinetics have been related to the changed redox potentials of the pigments introduced (Huber, H. et al. (1995) Chemical Physics, Special Issue, vol 197 (Hochstrasser, R.M. and Hofacker, G.L. eds.) pp. 297–305; [1]). In order to analyze potentially interfering structural changes induced in these reaction centers by the exchange procedure, in particular mispositioning or misorientation of the pigments, low-temperature linear dichroism spectra have been measured for reaction centers from Rhodobacter sphaeroides containing modified bacteriopheophytins and bacteriochlorophylls at the sites HAB and BA,B, respectively. They show that all modified pigments are oriented similar to the native ones, and that they do not affect significantly the linear dichroism of the monomeric bacteriochlorophylls and bacteriopheophytins or of the primary donor.
机译:>特定位置的颜料修饰可用于研究光合作用中的结构-功能关系。在带有修饰的(细菌)脱镁叶绿素的反应中心中,电子转移动力学的变化与所引入颜料的氧化还原电势的变化有关(Huber,H.等(1995)化学物理学,特刊,第197卷(Hochstrasser,RM和Hofacker,GL编辑。)第297-305页; [1])。为了分析通过交换程序在这些反应中心引起的潜在干扰结构变化,特别是颜料的错位或取向错误,已测量了含有 Sphaeroides 的球状细菌的反应中心的低温线性二色性光谱分别在H AB 和B A,B 位点修饰的噬菌素和叶绿素。他们表明,所有改性颜料的取向均与天然颜料相似,并且它们不会显着影响单体细菌叶绿素和细菌脱镁叶绿素或主要供体的线性二色性。

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