Varga A R, Kaplan S
Department of Microbiology and Molecular Genetics, University of Texas Health Science Center, Houston 77225.
J Biol Chem. 1993 Sep 15;268(26):19842-50.
The synthesis and stability of the H and M polypeptide subunits of the photosynthetic reaction center of Rhodobacter sphaeroides were examined. In wild-type cells, low levels of both M and H were found to be synthesized under aerobic growth conditions, with a 20-fold induction in their synthesis under anaerobic-dark growth conditions. Neither M nor H was stable in aerobic cells, but in anaerobic-dark grown cells stability increased dramatically with the t1/2 going from 4-6 min to values estimated in excess of 4 h. In the H-deficient mutant PUHA1, the synthesis and membrane partitioning of the M subunit were unaffected by the absence of the H subunit but there was a significant decrease in M polypeptide stability in the membranes of PUHA1 relative to wild-type cells. The stability of all or part of the M population in PUHA1 could be restored by providing an H-encoding plasmid in trans. It was also determined that the presence of bacteriochlorophyll in fully aerobic cells had a direct, positive effect on M and H stability, utilizing the oxygen-regulatory mutant strain T1a. Implications for the role of the H subunit and putative assembly factors in reaction center assembly are discussed.
对球形红细菌光合反应中心的H和M多肽亚基的合成及稳定性进行了研究。在野生型细胞中,发现M和H在有氧生长条件下的合成水平较低,而在厌氧黑暗生长条件下其合成量可诱导增加20倍。M和H在有氧细胞中均不稳定,但在厌氧黑暗生长的细胞中稳定性显著增加,半衰期从4 - 6分钟延长至估计超过4小时的值。在H缺陷型突变体PUHA1中,M亚基的合成及膜分配不受H亚基缺失的影响,但相对于野生型细胞,PUHA1膜中M多肽的稳定性显著降低。通过反式提供编码H的质粒可恢复PUHA1中全部或部分M群体的稳定性。利用氧调节突变株T1a还确定,在完全有氧的细胞中细菌叶绿素的存在对M和H的稳定性有直接的正向影响。讨论了H亚基和假定的组装因子在反应中心组装中的作用。