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首页> 外文期刊>The Journal of biological chemistry >UbiA prenyltransferase domain–containing protein-1 modulates HMG-CoA reductase degradation to coordinate synthesis of sterol and nonsterol isoprenoids
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UbiA prenyltransferase domain–containing protein-1 modulates HMG-CoA reductase degradation to coordinate synthesis of sterol and nonsterol isoprenoids

机译:含UbiA异戊二烯基转移酶结构域的蛋白1调节HMG-CoA还原酶降解,以协调固醇和非固醇类异戊二烯的合成

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UBIAD1 (UbiA prenyltransferase domain–containing protein-1) utilizes geranylgeranyl pyrophosphate (GGpp) to synthesize vitamin K2. We previously reported that sterols stimulate binding of UBIAD1 to endoplasmic reticulum (ER)–localized 3-hydroxy-3-methylglutaryl (HMG) CoA reductase. UBIAD1 binding inhibits sterol-accelerated, ER-associated degradation (ERAD) of reductase, one of several mechanisms for feedback control of this rate-limiting enzyme in the branched pathway that produces cholesterol and nonsterol isoprenoids such as GGpp. Accumulation of GGpp in ER membranes triggers release of UBIAD1 from reductase, permitting its maximal ERAD and ER-to-Golgi transport of UBIAD1. Mutant UBIAD1 variants associated with Schnyder corneal dystrophy (SCD), a human disorder characterized by corneal accumulation of cholesterol, resist GGpp-induced release from reductase and remain sequestered in the ER to block reductase ERAD. Using lines of genetically manipulated cells, we now examine consequences of UBIAD1 deficiency and SCD-associated UBIAD1 on reductase ERAD and cholesterol synthesis. Our results indicated that reductase becomes destabilized in the absence of UBIAD1, resulting in reduced cholesterol synthesis and intracellular accumulation. In contrast, an SCD-associated UBIAD1 variant inhibited reductase ERAD, thereby stabilizing the enzyme and contributing to enhanced synthesis and intracellular accumulation of cholesterol. Finally, we present evidence that GGpp-regulated, ER-to-Golgi transport enables UBIAD1 to modulate reductase ERAD such that synthesis of nonsterol isoprenoids is maintained in sterol-replete cells. These findings further establish UBIAD1 as a central player in the reductase ERAD pathway and regulation of isoprenoid synthesis. They also indicate that UBIAD1-mediated inhibition of reductase ERAD underlies cholesterol accumulation associated with SCD.
机译:UBIAD1(含有UbiA异戊二烯基转移酶域的蛋白1)利用香叶基香叶基香叶基焦磷酸酯(GGpp)合成维生素K2。我们先前曾报道,固醇会刺激UBIAD1与内质网(ER)定位的3-羟基-3-甲基戊二酰(HMG)CoA还原酶结合。 UBIAD1结合抑制还原酶的固醇加速,ER相关降解(ERAD),这是在产生胆固醇和非固醇类异戊二烯(如GGpp)的分支途径中对该速率限制酶进行反馈控制的几种机制之一。 ER膜中GGpp的积累触发了UBIAD1从还原酶的释放,从而允许其最大的ERAD和UBIAD1的ER向高尔基体转运。与Schnyder角膜营养不良(SCD)相关的突变UBIAD1变体是一种以胆固醇的角膜积累为特征的人类疾病,可抵抗GGpp诱导的还原酶释放,并保留在ER中以阻断还原酶ERAD。现在,使用转基因细胞系,我们研究了UBIAD1缺乏和与SCD相关的UBIAD1对还原酶ERAD和胆固醇合成的影响。我们的结果表明,在没有UBIAD1的情况下,还原酶变得不稳定,从而导致胆固醇合成减少和细胞内积累。相反,与SCD相关的UBIAD1变体抑制了还原酶ERAD,从而稳定了该酶并有助于胆固醇的合成和细胞内积累。最后,我们目前提供的证据表明,GGpp调节的ER到高尔基体的转运使UBIAD1能够调节还原酶ERAD,从而在固醇充足的细胞中维持非固醇类异戊二烯的合成。这些发现进一步确立了UBIAD1作为还原酶ERAD途径和类异戊二烯合成调节的核心参与者。他们还表明,UBIAD1介导的还原酶ERAD抑制是与SCD相关的胆固醇蓄积的基础。

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