Dreyfuss Beth Welty, Hamel Patrice P, Nakamoto Stacie S, Merchant Sabeeha
Department of Chemistry and Biochemistry, UCLA, Los Angeles, California 90095-1569, USA.
J Biol Chem. 2003 Jan 24;278(4):2604-13. doi: 10.1074/jbc.M208652200. Epub 2002 Nov 9.
The Ccs1 gene, encoding a highly divergent novel component of a system II type c-type cytochrome biogenesis pathway, is encoded by the previously defined CCS1 locus in Chlamydomonas reinhardtii. phoA and lacZalpha bacterial topological reporters were used to deduce a topological model of the Synechocystis sp. 6803 Ccs1 homologue, CcsB. CcsB, and therefore by analogy Ccs1, possesses a large soluble lumenal domain at its C terminus that is tethered in the thylakoid membrane by three closely spaced transmembrane domains in the N-terminal portion of the protein. Molecular analysis of ccs1 alleles reveals that the entire C-terminal soluble domain is essential for Ccs1 function and that a stromal loop appears to be important in vivo, at least for maintenance of Ccs1. Site-directed mutational analysis reveals that a single histidine (His(274)) within the last transmembrane domain, preceding the large lumenal domain, is required for c-type cytochrome assembly, whereas an invariant cysteine residue (Cys(199)) is shown to be non-essential. Ccs1 is proposed to interact with other Ccs components based on its reduced accumulation in ccs2, ccs3, ccs4, and ccsA strains.
Ccs1基因编码系统II型c型细胞色素生物合成途径中一个高度不同的新组分,由莱茵衣藻中先前定义的CCS1基因座编码。使用phoA和lacZα细菌拓扑报告基因来推导集胞藻6803 Ccs1同源物CcsB的拓扑模型。CcsB,因此类推Ccs1,在其C末端具有一个大的可溶性腔结构域,该结构域通过蛋白质N端部分三个紧密间隔的跨膜结构域锚定在类囊体膜中。对ccs1等位基因的分子分析表明,整个C末端可溶性结构域对Ccs1功能至关重要,并且一个基质环在体内似乎很重要,至少对于Ccs1的维持是如此。定点突变分析表明,在大腔结构域之前的最后一个跨膜结构域内的单个组氨酸(His(274))是c型细胞色素组装所必需的,而一个不变的半胱氨酸残基(Cys(199))被证明是非必需的。基于Ccs1在ccs2、ccs3、ccs4和ccsA菌株中积累减少,推测Ccs1与其他Ccs组分相互作用。