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过氧化物酶体酰基辅酶A连接酶的定位:棕榈酰辅酶A和木蜡酰辅酶A连接酶的差异定位

Topographical localization of peroxisomal acyl-CoA ligases: differential localization of palmitoyl-CoA and lignoceroyl-CoA ligases.

作者信息

Lazo O, Contreras M, Singh I

机构信息

Department of Pediatrics, Medical University of South Carolina, Charleston 29425.

出版信息

Biochemistry. 1990 Apr 24;29(16):3981-6. doi: 10.1021/bi00468a027.

Abstract

We found that peroxisomal lignoceroyl-CoA ligase, like palmitoyl-CoA ligase, is present in the peroxisomal membrane whereas the peroxisomal beta-oxidation enzyme system is localized in the matrix. To further define the role of peroxisomal acyl-CoA ligases (membrane component) in providing acyl-CoA for peroxisomal beta-oxidation, we examined the transverse topographical localization of enzymatic sites of palmitoyl-CoA and lignoceroyl-CoA ligases in the peroxisomal membranes. The disruption of peroxisomes by various techniques resulted in the release of a "latent" pool of lignoceroyl-CoA ligase activity while palmitoyl-CoA ligase activity remained the same. Proteolytic enzyme treatment inhibited palmitoyl-CoA ligase activity in intact peroxisomes but had no effect on lignoceroyl-CoA ligase activity. Lignoceroyl-CoA ligase activity was inhibited only if peroxisomes were disrupted with detergent before trypsin treatment. Antibodies to palmitoyl-CoA ligase and to peroxisomal membrane proteins (PMP) inhibited palmitoyl-CoA ligase in intact peroxisomes, and no pool of "latent" activity appeared when antibody-treated peroxisomes were disrupted with detergent. On the other hand, disruption of PMP antibody-treated peroxisomes with detergent resulted in the appearance of a "latent" pool of lignoceroyl-CoA ligase activity. These results demonstrate that the enzymatic site of palmitoyl-CoA ligase is on the cytoplasmic surface whereas that for lignoceroyl-CoA ligase is on the luminal surface of peroxisomal membranes. This implies that palmitoyl-CoA is synthesized on the cytoplasmic surface and is then transferred to the matrix through the peroxisomal membrane for beta-oxidation in the matrix.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

我们发现,过氧化物酶体木蜡酰辅酶A连接酶与棕榈酰辅酶A连接酶一样,存在于过氧化物酶体膜中,而过氧化物酶体β-氧化酶系统则定位于基质中。为了进一步确定过氧化物酶体酰基辅酶A连接酶(膜成分)在为过氧化物酶体β-氧化提供酰基辅酶A方面的作用,我们研究了棕榈酰辅酶A和木蜡酰辅酶A连接酶的酶位点在过氧化物酶体膜中的横向拓扑定位。用各种技术破坏过氧化物酶体导致木蜡酰辅酶A连接酶活性的“潜在”池释放,而棕榈酰辅酶A连接酶活性保持不变。蛋白酶处理抑制完整过氧化物酶体中的棕榈酰辅酶A连接酶活性,但对木蜡酰辅酶A连接酶活性没有影响。只有在胰蛋白酶处理前用过洗涤剂破坏过氧化物酶体,木蜡酰辅酶A连接酶活性才会受到抑制。针对棕榈酰辅酶A连接酶和过氧化物酶体膜蛋白(PMP)的抗体抑制完整过氧化物酶体中的棕榈酰辅酶A连接酶,当用洗涤剂破坏抗体处理过的过氧化物酶体时,没有出现“潜在”活性池。另一方面,用洗涤剂破坏PMP抗体处理过的过氧化物酶体导致出现木蜡酰辅酶A连接酶活性的“潜在”池。这些结果表明,棕榈酰辅酶A连接酶的酶位点在细胞质表面,而木蜡酰辅酶A连接酶的酶位点在过氧化物酶体膜的腔表面。这意味着棕榈酰辅酶A在细胞质表面合成,然后通过过氧化物酶体膜转移到基质中进行基质中的β-氧化。(摘要截短为250字)

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