首页> 美国卫生研究院文献>The Journal of Biological Chemistry >The Arabidopsis Peroxisomal ABC Transporter Comatose Complements the Saccharomyces cerevisiae pxa1 pxa2Δ Mutant for Metabolism of Long-chain Fatty Acids and Exhibits Fatty Acyl-CoA-stimulated ATPase Activity
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The Arabidopsis Peroxisomal ABC Transporter Comatose Complements the Saccharomyces cerevisiae pxa1 pxa2Δ Mutant for Metabolism of Long-chain Fatty Acids and Exhibits Fatty Acyl-CoA-stimulated ATPase Activity

机译:拟南芥过氧化物酶体ABC转运蛋白补充玉米芽糖用于酿酒酵母pxa1pxa2Δ突变体的长链脂肪酸代谢并具有脂肪酰基辅酶A刺激的ATPase活性。

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摘要

The Arabidopsis ABC transporter Comatose (CTS; AtABCD1) is required for uptake into the peroxisome of a wide range of substrates for β-oxidation, but it is uncertain whether CTS itself is the transporter or if the transported substrates are free acids or CoA esters. To establish a system for its biochemical analysis, CTS was expressed in Saccharomyces cerevisiae. The plant protein was correctly targeted to yeast peroxisomes, was assembled into the membrane with its nucleotide binding domains in the cytosol, and exhibited basal ATPase activity that was sensitive to aluminum fluoride and abrogated by mutation of a conserved Walker A motif lysine residue. The yeast pxa1 pxa2Δ mutant lacks the homologous peroxisomal ABC transporter and is unable to grow on oleic acid. Consistent with its exhibiting a function in yeast akin to that in the plant, CTS rescued the oleate growth phenotype of the pxa1 pxa2Δ mutant, and restored β-oxidation of fatty acids with a range of chain lengths and varying degrees of desaturation. When expressed in yeast peroxisomal membranes, the basal ATPase activity of CTS could be stimulated by fatty acyl-CoAs but not by fatty acids. The implications of these findings for the function and substrate specificity of CTS are discussed.
机译:拟南芥ABC转运蛋白Comatose(CTS; AtABCD1)是摄取多种过氧化物酶(β-oxidation)底物的过氧化物酶体所必需的,但不确定CTS本身是转运蛋白还是被转运的底物是游离酸或CoA酯。为了建立一个用于其生化分析的系统,CTS在酿酒酵母中表达。将植物蛋白正确靶向酵母过氧化物酶体,将其核苷酸结合结构域组装到细胞膜中,并表现出对氟化铝敏感的碱性ATPase活性,并通过保守的Walker A赖氨酸残基突变而废除。酵母pxa1pxa2Δ突变体缺少同源的过氧化物酶体ABC转运蛋白,无法在油酸上生长。 CTS与其在酵母中的功能相似(与在植物中的功能相似)一致,挽救了pxa1pxa2Δ突变体的油酸盐生长表型,并恢复了具有一定链长和不同去饱和度的脂肪酸的β-氧化。当在酵母过氧化物酶体膜中表达时,CTS的基础ATPase活性可以被脂肪酰基辅酶A刺激,而不受脂肪酸刺激。讨论了这些发现对CTS功能和底物特异性的影响。

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