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3-羟基-3-甲基戊二酰辅酶A还原酶的调控:寻找源自甲羟戊酸的该酶阻遏物。

Regulation of 3-hydroxy-3-methylglutaryl coenzyme A reductase: search for the enzyme's repressor derived from mevalonate.

作者信息

Popják G, Meenan A

机构信息

Department of Medicine, U.C.L.A. School of Medicine 90024.

出版信息

Proc R Soc Lond B Biol Sci. 1987 Sep 22;231(1265):391-414. doi: 10.1098/rspb.1987.0052.

Abstract

Three inhibitors of squalene 2,3-oxide-lanosterol cyclase (AMO 1618, 4,4,10 beta-trimethyl-trans-decal-3 beta-ol (TMD) and 2,3-iminosqualene (ISq] were used to study effects on 3-hydroxy-3-methylglutaryl coenzyme A (HMG-CoA) reductase, and on sterol and polyprenyl synthesis from [14C]acetate and [14C]mevalonate in cultured rat hepatoma (H4) cells. After a 4 h exposure of cultures to AMO 1618 or TMD, followed by removal of the inhibitors, the utilization of [14C]acetate for synthesis of digitonin-precipitable sterols increased about twofold, an increase parallelled by the rise in HMG-CoA reductase. Mevalonate at 2.3 mM counteracted the effects of these inhibitors on the reductase. When (R)-[2-14C]mevalonate at 2.3 mM was included with the two inhibitors in the culture media, the cells were still able to synthesize cholesterol although in lesser amounts than the controls. In the presence of TMD the H4 cells also accumulated [14C]squalene 2,3-oxide and [14C]squalene 2,3-22,23-dioxide. ISq added to cells kept in full-growth medium (10 micrograms ml-1) caused an almost complete and irreversible inactivation of the squalene oxide-lanosterol cyclase but did not inhibit polyprenyl synthesis, as the amount of [14C]mevalonate converted into squalene, squalene 2,3-oxide, squalene 2,3-22,23-dioxide plus a little cholesterol was equal to the amount converted by control cells into cholesterol plus squalene. After a 24 h exposure of cells kept in full-growth medium to ISq (10 micrograms ml-1), the levels of HMG-CoA reductase rose about twofold. ISq completely abolished the suppressive effect of 2.3 mM (R)-mevalonate on the reductase. Chromatin isolated from cell nuclei contains cholesterol, which is renewed biosynthetically. It is argued that the suppressor of HMG-CoA reductase, derived from mevalonate, is a sterol and not a non-steroidal product of mevalonate metabolism.

摘要

使用三种角鲨烯2,3-环氧化物-羊毛甾醇环化酶抑制剂(AMO 1618、4,4,10β-三甲基-反式十氢化萘-3β-醇(TMD)和2,3-亚氨基角鲨烯(ISq))来研究其对3-羟基-3-甲基戊二酰辅酶A(HMG-CoA)还原酶以及对培养的大鼠肝癌(H4)细胞中[14C]乙酸盐和[14C]甲羟戊酸合成甾醇和聚异戊二烯的影响。将培养物用AMO 1618或TMD处理4小时,然后去除抑制剂后,用于合成洋地黄皂苷可沉淀甾醇的[14C]乙酸盐的利用率增加了约两倍,这种增加与HMG-CoA还原酶的升高平行。2.3 mM的甲羟戊酸抵消了这些抑制剂对还原酶的作用。当在培养基中加入2.3 mM的(R)-[2-14C]甲羟戊酸和这两种抑制剂时,细胞仍能够合成胆固醇,尽管合成量少于对照。在TMD存在下,H4细胞还积累了[14C]角鲨烯2,3-环氧化物和[14C]角鲨烯2,3-22,23-二氧化物。向处于完全生长培养基(10μg/ml)中的细胞添加ISq会导致角鲨烯环氧化物-羊毛甾醇环化酶几乎完全且不可逆地失活,但不抑制聚异戊二烯的合成,因为转化为角鲨烯、角鲨烯2,3-环氧化物、角鲨烯2,3-22,23-二氧化物以及少量胆固醇的[14C]甲羟戊酸的量与对照细胞转化为胆固醇和角鲨烯的量相等。将处于完全生长培养基中的细胞用ISq(10μg/ml)处理24小时后,HMG-CoA还原酶的水平升高了约两倍。ISq完全消除了2.3 mM(R)-甲羟戊酸对还原酶的抑制作用。从细胞核中分离出的染色质含有胆固醇,其通过生物合成进行更新。有人认为,源自甲羟戊酸的HMG-CoA还原酶抑制剂是一种甾醇,而不是甲羟戊酸代谢的非甾类产物。

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