Ohba M, Sato R, Yoshida Y, Bieglmayer C, Ruis H
Biochim Biophys Acta. 1979 Feb 26;572(2):352-62.
The involvement of cytochrome b5 in palmitoyl-CoA desaturation by yeast microsomes was studied by using yeast mutants requiring unsaturated fatty acids and an antibody to yeast cytochrome b5. The mutants used were an unsaturated fatty acid auxotroph (strain E5) and a pleiotropic mutant (strain Ole 3) which requires either Tween 80 and ergosterol or delta-aminolevulinic acid for growth. Microsomes from the wild-type strain possessed both the desaturase activity and cytochrome b5, whereas those from mutant E5 contained the cytochrome but lacked the desaturase activity. Microsomes from mutant Ole 3 grown with Tween 80 plus ergosterol were devoid of both the desaturase activity and cytochrome b5, but those from delta-aminolevulinic acid-grown mutant Ole 3 contained cytochrome b5 and catalyzed the desaturation. The cytochrome b5 content in microsomes from mutant Ole 3 could be varied by changing the delta-aminolevulinic acid concentration in the growth medium, and the desaturase activity of the microsomes increased as their cytochrome b5 content was increased. The antibody to yeast cytochrome b5, but not the control gamma-globulin fraction, inhibited the NADH-cytochrome c reductase and NADH-dependent desaturase activities of the wild-type microsomes. It is concluded that cytochrome b5 is actually involved in the desaturase system of yeast microsomes. The lack of desaturase activity in mutant Ole 3 grown with Tween 80 plus ergosterol seems to be due to the absence of cytochrome b5 in microsomes, whereas the genetic lesion in mutant E5 appears to be located at ther terminal desaturase.
通过使用需要不饱和脂肪酸的酵母突变体和抗酵母细胞色素b5的抗体,研究了细胞色素b5参与酵母微粒体中棕榈酰辅酶A去饱和作用的情况。所用的突变体是一个不饱和脂肪酸营养缺陷型(菌株E5)和一个多效突变体(菌株Ole 3),后者生长需要吐温80和麦角固醇或δ-氨基乙酰丙酸。野生型菌株的微粒体同时具有去饱和酶活性和细胞色素b5,而突变体E5的微粒体含有细胞色素但缺乏去饱和酶活性。用吐温80加麦角固醇培养的突变体Ole 3的微粒体既没有去饱和酶活性也没有细胞色素b5,但用δ-氨基乙酰丙酸培养的突变体Ole 3的微粒体含有细胞色素b5并能催化去饱和作用。通过改变生长培养基中δ-氨基乙酰丙酸的浓度,可以改变突变体Ole 3微粒体中的细胞色素b5含量,并且微粒体的去饱和酶活性随着其细胞色素b5含量的增加而增加。抗酵母细胞色素b5的抗体,而不是对照γ-球蛋白组分,抑制了野生型微粒体的NADH-细胞色素c还原酶和NADH依赖性去饱和酶活性。得出的结论是,细胞色素b5实际上参与了酵母微粒体的去饱和酶系统。用吐温80加麦角固醇培养的突变体Ole 3缺乏去饱和酶活性似乎是由于微粒体中没有细胞色素b5,而突变体E5中的遗传损伤似乎位于末端去饱和酶处。