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大鼠肝脏鲨烯环氧酶的增溶及部分特性鉴定

Solubilization and partial characterization of rat liver squalene epoxidase.

作者信息

Ono T, Bloch K

出版信息

J Biol Chem. 1975 Feb 25;250(4):1571-9.

PMID:234459
Abstract

The microsomal enzyme system from rat liver which catalyzes squalene epoxidation requires a supernatant protein and phospholipids (Tai, H., and Bloch, K. (1972) J. Biol. Chem. 247, 3767). It has now been found that these two cytoplasmic components can be replaced by Triton X-100. The same detergent solubilizes the microsomal squalene epoxidase and the resulting supernatant can be separated into two components, A and B, by DEAE-cellulose chromatography. Neither Fraction A nor B alone has significant squalene epoxidase activity but combining the two affords a reconstituted system 5-fold higher in specific epoxidase activity than that of the original microsomes. FAD and Triton X-100 in addition to molecular oxygen and NADPH are required in the reconstituted system. Subjecting Fraction A to a second DEAE-cellulose chromatography does not change its specific activity but lowers NADH-ferricyanide reductase activity and the protoheme content to 1/25 and 1/4, respectively. When Fraction B was chromatographed on Sephadex G-200, the specific epoxidase activity tested in the presence of Fraction A was increased 3-fold. This procedure also raised the specific activity of NADPH-cytochrome c reductase activity in Fraction B 3-fold. The reconstituted epoxidase system is not inhibited by either carbon monoxide, potassium cyanide, or o-phenanthrolien but Tiron at 1 mM was inhibitory (50%). Erythrocuprein has no effect on epoxidation. No evidence has been found for the participation of hemoproteins (P450 or cytochrome b5) in squalene epoxidation. Component B appears to be identical with the flavoprotein NADPH-cytochrome c reductase. Component A may be a flavoprotein with an easily dissociable prosthetic group.

摘要

大鼠肝脏微粒体酶系统催化角鲨烯环氧化反应需要一种上清液蛋白和磷脂(Tai, H.,和Bloch, K.(1972年)《生物化学杂志》247卷,3767页)。现已发现,这两种细胞质成分可用Triton X-100替代。同样的去污剂可溶解微粒体角鲨烯环氧化酶,所得上清液经DEAE-纤维素层析可分离成A和B两个组分。单独的A组分或B组分均无显著的角鲨烯环氧化酶活性,但将两者合并可得到一个重组系统,其比活性比原始微粒体高5倍。重组系统除分子氧和NADPH外,还需要FAD和Triton X-100。对A组分进行第二次DEAE-纤维素层析,其比活性不变,但NADH-铁氰化物还原酶活性和原血红素含量分别降至1/25和1/4。当B组分在Sephadex G-200上进行层析时,在A组分存在下测试的比环氧化酶活性提高了3倍。该过程还使B组分中NADPH-细胞色素c还原酶活性的比活性提高了3倍。重组环氧化酶系统不受一氧化碳、氰化钾或邻菲罗啉的抑制,但1 mM的Tiron具有抑制作用(50%)。红细胞铜蛋白对角鲨烯环氧化无影响。未发现有血红蛋白(P450或细胞色素b5)参与角鲨烯环氧化的证据。B组分似乎与黄素蛋白NADPH-细胞色素c还原酶相同。A组分可能是一种具有易解离辅基的黄素蛋白。

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