Finegold A A, Shatwell K P, Segal A W, Klausner R D, Dancis A
Cell Biology and Metabolism Branch, NICHD, National Institutes of Health, Bethesda, Maryland 20892, USA.
J Biol Chem. 1996 Dec 6;271(49):31021-4. doi: 10.1074/jbc.271.49.31021.
A plasma membrane iron reductase, required for cellular iron acquisition by Saccharomyces cerevisiae, and the human phagocytic NADPH oxidase, implicated in cellular defense, contain low potential plasma membrane b cytochromes that share elements of structure and function. Four critical histidine residues in the FRE1 protein of the iron reductase were identified by site-directed mutagenesis. Individual mutation of each histidine to alanine eliminated the entire heme spectrum without affecting expression of the apoprotein, documenting the specificity of the requirement for the histidine residues. These critical residues are predicted to coordinate a bis-heme structure between transmembrane domains of the FRE1 protein. The histidine residues are conserved in the related gp91(phox) protein of the NADPH oxidase of human granulocytes, predicting the sites of heme coordination in that protein complex. Similarly spaced histidine residues have also been implicated in heme binding by organelle b cytochromes with little overall sequence similarity to the plasma membrane b cytochromes. This bis-heme motif may play a role in transmembrane electron transport by distinct families of polytopic b cytochromes.
酿酒酵母细胞获取铁所需的质膜铁还原酶以及参与细胞防御的人类吞噬细胞NADPH氧化酶,都含有低电位质膜b型细胞色素,它们在结构和功能上有共同之处。通过定点诱变确定了铁还原酶FRE1蛋白中的四个关键组氨酸残基。将每个组氨酸分别突变为丙氨酸消除了整个血红素光谱,而不影响脱辅基蛋白的表达,证明了对组氨酸残基需求的特异性。预计这些关键残基可在FRE1蛋白跨膜结构域之间协调双血红素结构。这些组氨酸残基在人类粒细胞NADPH氧化酶的相关gp91(phox)蛋白中保守,预测了该蛋白复合物中血红素配位的位点。间隔相似的组氨酸残基也与细胞器b型细胞色素的血红素结合有关,而这些细胞器b型细胞色素与质膜b型细胞色素总体序列相似性很小。这种双血红素基序可能在多跨膜b型细胞色素不同家族的跨膜电子传递中起作用。