Rensing C, Pribyl T, Nies D H
Institut für Mikrobiologie, Halle, Germany.
J Bacteriol. 1997 Nov;179(22):6871-9. doi: 10.1128/jb.179.22.6871-6879.1997.
The membrane-bound CzcCBA protein complex mediates heavy metal resistance in Alcaligenes eutrophus by an active cation efflux mechanism driven by cation-proton antiport. The CzcA protein alone is able to mediate weak resistance to zinc and cobalt and is thus the central antiporter subunit. The two histidine-rich motifs in the CzcB subunit are not essential for zinc resistance; however, deletion of both motifs led to a small but significant loss of resistance to this cation. Translation of the czcC gene encoding the third subunit of the CzcCBA complex starts earlier than predicted, and CzcC is probably a periplasmic protein, as judged by the appearance of two bands after expression of czcC in Escherichia coli under control of the phage T7 promoter. Fusions of CzcC and CzcB with alkaline phosphatase and beta-galactosidase are in agreement with a periplasmic location of most parts of both proteins. Both CzcC and CzcB are bound to a membrane, probably the outer membrane, by themselves and do not need either CzcA or each other as an anchoring protein. Based on these data, a new working model for the function of the Czc system is discussed.
膜结合的CzcCBA蛋白复合物通过由阳离子-质子反向转运驱动的主动阳离子外排机制介导嗜碱假单胞菌中的重金属抗性。单独的CzcA蛋白能够介导对锌和钴的弱抗性,因此是中央反向转运蛋白亚基。CzcB亚基中的两个富含组氨酸的基序对于锌抗性不是必需的;然而,两个基序的缺失导致对这种阳离子的抗性有小但显著的丧失。编码CzcCBA复合物第三亚基的czcC基因的翻译起始比预测的要早,并且根据在噬菌体T7启动子控制下在大肠杆菌中表达czcC后出现两条带判断,CzcC可能是一种周质蛋白。CzcC和CzcB与碱性磷酸酶和β-半乳糖苷酶的融合与这两种蛋白大部分的周质定位一致。CzcC和CzcB自身都与膜结合,可能是外膜,并且不需要CzcA或彼此作为锚定蛋白。基于这些数据,讨论了Czc系统功能的新工作模型。