Chen Lei, Kirmaier Christine, Holten Dewey, Bocian David F
Department of Chemistry, University of California, Riverside, CA 92521-0403, USA.
Photosynth Res. 2005;83(1):35-43. doi: 10.1007/s11120-004-2349-z.
Lysine residues have been introduced into Rhodobacter capsulatus reaction centers at M-polypeptide position 201 and at L-polypeptide position 178. These positions are in the proximity of ring V of the accessory bacterochlorophylls BA and BB, respectively. Resonance Raman studies indicate that the introduction of a Lys residue at either position M201 or L178 results in structural perturbations to the BChl cofactors. Lys at L178 directly interacts with BB, most likely via a hydrogen bond. The hydrogen bonding interaction is consistent with enhanced B branch electron transfer that is observed in RCs from the S(L178)K/G(M201)D/L(M212)H triple mutant versus the G(M201)D/L(M212)H double mutant. In contrast, the introduction of a Lys at M201 does not result in hydrogen bonding to the BA cofactor, in contrast to the introduction of a His at M201. Accordingly, the alkyl ammonium head group of the side chain of the Lys at M201 residue appears to be distant from BA.
已将赖氨酸残基引入到荚膜红细菌反应中心的M多肽第201位和L多肽第178位。这些位置分别靠近辅助细菌叶绿素BA和BB的环V。共振拉曼研究表明,在M201或L178位置引入赖氨酸残基会导致对BChl辅因子的结构扰动。L178处的赖氨酸直接与BB相互作用,最有可能是通过氢键。这种氢键相互作用与在S(L178)K/G(M201)D/L(M212)H三重突变体的反应中心中观察到的与G(M201)D/L(M212)H双突变体相比增强的B分支电子转移一致。相比之下,与在M201处引入组氨酸不同,在M201处引入赖氨酸不会导致与BA辅因子形成氢键。因此,M201残基处赖氨酸侧链的烷基铵头部基团似乎远离BA。