Sayavedra-Soto L A, Arp D J
Laboratory for Nitrogen Fixation, Oregon State University, Corvallis 97331-2902.
J Bacteriol. 1993 Jun;175(11):3414-21. doi: 10.1128/jb.175.11.3414-3421.1993.
The essential role of the small (HoxK) subunit of hydrogenase of Azotobacter vinelandii in H2 oxidation was established. This was achieved by modification of the two Cys-X2-Cys amino acid motifs at the N and C termini of the HoxK subunit (Cys-62, -65, -294, and -297). The Cys codons were individually mutated to Ser codons. Modifications in these two motifs resulted in loss of hydrogenase activity. At the N terminus, the mutations of the codons for the motif Cys-62-Thr-Cys-64-Cys-65 decreased the activity of hydrogenase to levels no higher than 30% of those of the parental strain. H2 oxidation with the alternate electron acceptors methylene blue and benzyl viologen was decreased. H2 evolution and exchange activities were also affected. Cys-64 possibly substitutes for either Cys-62 or Cys-65, allowing for partial activity. Mutation of the codons for Cys-294 and Cys-297 to Ser codons resulted in no hydrogenase activity. The results are consistent with alterations of the ligands of FeS clusters in the HoxK subunit of hydrogenase [corrected].
已确定维涅兰德固氮菌氢化酶小(HoxK)亚基在氢气氧化中的关键作用。这是通过修饰HoxK亚基N端和C端的两个Cys-X2-Cys氨基酸基序(Cys-62、-65、-294和-297)实现的。将Cys密码子分别突变为Ser密码子。这两个基序的修饰导致氢化酶活性丧失。在N端,基序Cys-62-Thr-Cys-64-Cys-65的密码子突变使氢化酶活性降低至不高于亲本菌株活性的30%。用替代电子受体亚甲蓝和苄基紫精进行的氢气氧化减少。氢气释放和交换活性也受到影响。Cys-64可能替代Cys-62或Cys-65,从而具有部分活性。将Cys-294和Cys-297的密码子突变为Ser密码子导致无氢化酶活性。结果与氢化酶HoxK亚基中FeS簇配体的改变一致[已校正]。