CHANGING STEREOCHEMISTRY FOR A METABOLIC PATHWAY IN-VIVO - EXPERIMENTS WITH THE PEROXISOMAL BETA-OXIDATION IN YEAST

被引:46
作者
FILPPULA, SA
SORMUNEN, RT
HARTIG, A
KUNAU, WH
HILTUNEN, JK
机构
[1] UNIV OULU,DEPT MED BIOCHEM,SF-90220 OULU,FINLAND
[2] UNIV OULU,BIOCTR,SF-90220 OULU,FINLAND
[3] UNIV OULU,DEPT PATHOL,SF-90220 OULU,FINLAND
[4] BIOZENTRUM,INST BIOCHEM & MOLEK ZELLBIOL,A-1030 VIENNA,AUSTRIA
[5] BIOZENTRUM,LUDWIG BOLTZMANN FORSCH STELLE BIOCHEM,A-1030 VIENNA,AUSTRIA
[6] RUHR UNIV BOCHUM,FAK MED,ZELLBIOL ABT,INST PHYSIOL CHEM,W-4630 BOCHUM,GERMANY
[7] UNIV KUOPIO,DEPT BIOCHEM & BIOTECHNOL,SF-70211 KUOPIO,FINLAND
关键词
D O I
10.1074/jbc.270.46.27453
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The biosphere is inherently built of chiral molecules, and once their metabolism is established, the stereochemical course of the reactions involved is seen to remain highly conserved, However, by replacing the yeast peroxisomal multifunctional enzyme (MFE), which catalyzes the second and third reactions of beta-oxidation of fatty acids via D-3-hydroxyacyl-CoA intermediates, with rat peroxisomal MFE, which catalyzes the same reactions via L-3-hydroxy intermediates, it was possible to change the chiralities of the intermediates in a major metabolic pathway in vivo. Both stereochemical alternatives allowed the yeast cells to grow on oleic acid, implying that when the beta-oxidation pathways evolved, the overall function was the determining factor for the ac quisition of MFEs and not the stereospecificities of the reactions themselves.
引用
收藏
页码:27453 / 27457
页数:5
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