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ROLE OF THE LINKER REGION CONNECTING THE REDUCTASE AND HEME DOMAINS IN CYTOCHROME P450(BM-3)

机译:连接区连接还原酶和血红素域在细胞色素P450(BM-3)中的作用

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摘要

Cytochrome P450(BM-3) is a fatty acid monooxygnease that contains the catalytic P450 heme domain covalently attached to a diflavin P450 reductase domain, The function of the linker region connecting the C-terminal end of the heme domain to the N-terminal end of the reductase domain has been studied by deleting parts of the linker and changing the sequence of the linker. Deleting three or six residues or changing an Arg-Lys-Lys stretch in the middle of the linker to Ala-Ala-Ala does not alter the functional properties of either domain. The mutants ret in full cytochrome c and ferricyanide reductase activities characteristic of the P450 reductase domain. The heme domain in the mutants retains its ability to bind a fatty acid substrate giving the full low-to-high spin shift and exhibits the normal 450 nm absorption band characteristic of the reduced carbon monoxide complex. However, the six amino acid deletion mutant exhibits nearly undetectable levels of fatty acid hydroxylase activity, the three amino acid deletion mutant about 10% activity, and the three Ala substitution mutant about 50% activity. The mutants also exhibit slower rates of reductase-to-heme electron transfer rates that correlate with the loss in fatty acid hydroxylase activity. These results indicate that the length of the linker and, to a much less extent, the sequence are important for correctly orienting the reductase and heme domains, which apparently is necessary to achieve efficient reductase-to-heme electron transfer rates.
机译:细胞色素P450(BM-3)是一种脂肪酸单加氧酶,其包含催化性的P450血红素结构域,该结构域与二黄素P450还原酶结构域共价连接,连接区域的功能是将血红素结构域的C末端连接至N末端已经通过删除接头的部分并改变接头的序列来研究还原酶结构域的“末端”。删除三个或六个残基或改变接头中间与Ala-Ala-Ala的Arg-Lys-Lys延伸不会改变任何一个结构域的功能特性。突变体以P450还原酶结构域特有的完整细胞色素c和铁氰化物还原酶活性恢复。突变体中的血红素结构域保留了其与脂肪酸底物结合的能力,从而给出了从低到高的完全自旋位移,并表现出还原的一氧化碳复合物的正常450 nm吸收带特征。然而,六个氨基酸缺失突变体表现出几乎不可检测的水平的脂肪酸羟化酶活性,三个氨基酸缺失突变体具有约10%的活性,而三个Ala取代突变体具有约50%的活性。突变体还表现出较慢的还原酶-血红素电子转移速率,这与脂肪酸羟化酶活性的降低有关。这些结果表明,连接子的长度以及在较小程度上的序列对于正确地定位还原酶和血红素结构域很重要,这显然对于实现有效的还原酶-血红素电子转移速率是必需的。

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