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Evidence that multifunctional protein 2 and not multifunctional protein 1 is involved in the peroxisomal beta-oxidation of pristanic acid.

机译:多功能蛋白2而不是多功能蛋白1参与过氧甾体过氧化物酶体β-氧化的证据。

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摘要

The second (enoyl-CoA hydratase) and third (3-hydroxyacyl-CoA dehydrogenase) steps of peroxisomal beta-oxidation are catalysed by two separate multifunctional proteins (MFPs), MFP-1 being involved in the degradation of straight-chain fatty acids and MFP-2 in the beta-oxidation of the side chain of cholesterol (bile acid synthesis). In the present study we determined which of the two MFPs is involved in the peroxisomal degradation of pristanic acid by using the synthetic analogue 2-methylpalmitic acid. The four stereoisomers of 3-hydroxy-2-methylpalmitoyl-CoA were separated by gas chromatography after hydrolysis, methylation and derivatization of the hydroxy group with (S)-2-phenylpropionic acid, and the stereoisomers were designated I-IV according to their order of elution from the column. Purified MFP-1 dehydrated stereoisomer IV but dehydrogenated stereoisomer III, so by itself MFP-1 is not capable of converting a branched enoyl-CoA into a 3-ketoacyl-CoA. In contrast, MFP-2 dehydrated and dehydrogenated the same stereoisomer (II), so it is highly probable that MFP-2 is involved in the peroxisomal degradation of branched fatty acids and that stereoisomer II is the physiological intermediate in branched fatty acid oxidation. By analogy with the results obtained with the four stereoisomers of the bile acid intermediate varanoyl-CoA, stereoisomer II can be assigned the 3R-hydroxy, 2R-methyl configuration.
机译:过氧化物酶体β-氧化的第二步(烯酰辅酶A水合酶)和第三步(3-羟酰基辅酶A脱氢酶)由两个独立的多功能蛋白(MFP)催化,MFP-1参与直链脂肪酸的降解和MFP-2在胆固醇侧链的β-氧化(胆汁酸合成)。在本研究中,我们通过使用合成的类似物2-甲基棕榈酸确定了两种MFP中的哪一种参与了过氧甾体酸的过氧化物酶体降解。用(S)-2-苯基丙酸水解,甲基化和羟基衍生化后,通过气相色谱分离3-羟基-2-甲基棕榈酰-CoA的四种立体异构体,根据其顺序将其命名为I-IV从色谱柱中洗脱。纯化的MFP-1脱水了立体异构体IV,但脱水了立体异构体III,因此MFP-1本身不能将支链烯酰基-CoA转化为3-酮酰基-CoA。相反,MFP-2使相同的立体异构体(II)脱水和脱氢,因此很有可能MFP-2参与支链脂肪酸的过氧化物酶体降解,而立体异构体II是支链脂肪酸氧化的生理中间体。通过与胆汁酸中间体varanoyl-CoA的四个立体异构体获得的结果类似,可以将立体异构体II分配为3R-羟基,2R-甲基构型。

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