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硫胺素焦磷酸在过氧化物酶体2-羟酰基辅酶A裂解酶的寡聚化、功能及导入中的作用

Role of thiamine pyrophosphate in oligomerisation, functioning and import of peroxisomal 2-hydroxyacyl-CoA lyase.

作者信息

Fraccascia Patrizia, Casteels Minne, De Schryver Evelyn, Van Veldhoven Paul P

机构信息

Department of Molecular Cell Biology, Katholieke Universiteit Leuven, Leuven, Belgium.

出版信息

Biochim Biophys Acta. 2011 Oct;1814(10):1226-33. doi: 10.1016/j.bbapap.2011.06.007. Epub 2011 Jun 25.

DOI:10.1016/j.bbapap.2011.06.007
PMID:21708296
Abstract

During peroxisomal α-oxidation, the CoA-esters of phytanic acid and 2-hydroxylated straight chain fatty acids are cleaved into a (n-1) fatty aldehyde and formyl-CoA by 2-hydroxyacyl-CoA lyase (HACL1). HACL1 is imported into peroxisomes via the PEX5/PTS1 pathway, and so far, it is the only known peroxisomal TPP-dependent enzyme in mammals. In this study, the effect of mutations in the TPP-binding domain of HACL1 on enzyme activity, subcellular localisation and oligomerisation was investigated. Mutations of the aspartate 455 and serine 456 residues within the TPP binding domain of the human HACL1 did not affect the targeting upon expression in transfected CHO cells, although enzyme activity was abolished. Gel filtration of native and mutated N-His(6)-fusions, expressed in yeast, revealed that the mutations did not influence the oligomerisation of the (apo)enzyme. Subcellular fractionation of yeast cells expressing HACL1 showed that the lyase activity sedimented at high density in a Nycodenz gradient. In these fractions TPP could be measured, but not when mutated HACL1 was expressed, although the recombinant enzyme was still targeted to peroxisomes. These findings indicate that the binding of TPP is not required for peroxisomal targeting and correct folding of HACL1, in contrast to other TPP-dependent enzymes, and suggest that transport of TPP into peroxisomes is dependent on HACL1 import, without requirement of a specific solute transporter.

摘要

在过氧化物酶体α-氧化过程中,植烷酸和2-羟基化直链脂肪酸的辅酶A酯被2-羟基酰基辅酶A裂解酶(HACL1)裂解为一个(n-1)脂肪醛和甲酰辅酶A。HACL1通过PEX5/PTS1途径被导入过氧化物酶体,到目前为止,它是哺乳动物中唯一已知的依赖硫胺素焦磷酸(TPP)的过氧化物酶体酶。在本研究中,研究了HACL1的TPP结合结构域中的突变对酶活性、亚细胞定位和寡聚化的影响。人HACL1的TPP结合结构域内天冬氨酸455和丝氨酸456残基的突变,在转染的CHO细胞中表达时不影响靶向作用,尽管酶活性被消除。对在酵母中表达的天然和突变的N-组氨酸(6)融合蛋白进行凝胶过滤分析,结果显示这些突变不影响(脱辅基)酶的寡聚化。对表达HACL1的酵母细胞进行亚细胞分级分离,结果显示裂解酶活性在Nycodenz梯度中以高密度沉降。在这些级分中可以检测到TPP,但当表达突变的HACL1时则检测不到,尽管重组酶仍靶向过氧化物酶体。这些发现表明,与其他依赖TPP的酶不同,TPP的结合对于HACL1的过氧化物酶体靶向和正确折叠不是必需的,并提示TPP向过氧化物酶体的转运依赖于HACL1的导入,而不需要特定的溶质转运体。

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