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真菌中关键代谢途径的可塑性

Plasticity of a key metabolic pathway in fungi.

作者信息

Shen Yao-Qing, Burger Gertraud

机构信息

Robert Cedergren Center for Bioinformatics and Genomics, Biochemistry Department, Université de Montréal, Montreal, QC, Canada.

出版信息

Funct Integr Genomics. 2009 May;9(2):145-51. doi: 10.1007/s10142-008-0095-6. Epub 2008 Sep 16.

Abstract

Beta oxidation is the principal metabolic pathway for fatty acid degradation. The pathway is virtually universally present throughout eukaryotes yet displays different forms in enzyme architecture, substrate specificity, and subcellular location. In this review, we examine beta oxidation across the fungal kingdom by conducting a large-scale in silico screen and localization prediction for all relevant enzymes in >50 species. The survey reveals that fungi exhibit an astounding diversity of beta oxidation pathways and shows that the combined presence of distinct mitochondrial and peroxisomal pathways is the prevailing and likely ancestral type of beta oxidation in fungi. In addition, the available information indicates that the mitochondrial pathway was lost in the common ancestor of Saccharomycetes. Finally, we infer the existence of a hybrid peroxisomal pathway in several Sordariomycetes, including Neurospora crassa. In these cases, a typically mitochondrion-located enzyme compensates for the lack of a peroxisomal one.

摘要

β-氧化是脂肪酸降解的主要代谢途径。该途径几乎普遍存在于所有真核生物中,但在酶结构、底物特异性和亚细胞定位方面表现出不同的形式。在本综述中,我们通过对50多个物种中所有相关酶进行大规模的计算机筛选和定位预测,研究了真菌界的β-氧化。调查显示,真菌的β-氧化途径具有惊人的多样性,并表明不同的线粒体和过氧化物酶体途径的共同存在是真菌中普遍存在且可能是祖先类型的β-氧化。此外,现有信息表明线粒体途径在酵母菌的共同祖先中丢失了。最后,我们推断在包括粗糙脉孢菌在内的几种粪壳菌纲中存在一种混合过氧化物酶体途径。在这些情况下,一种通常位于线粒体中的酶弥补了过氧化物酶体中该酶的缺失。

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