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Proteins involved in microbody biogenesis and degradation in Aspergillus nidulans

机译:构巢曲霉中涉及微生物发生和降解的蛋白质

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Fungal microbodies (peroxisomes) are inducible organelles that Proliferate in response to nutritional Cues. Proteins involved in peroxisome biogenesis/proliferation are designated peroxins and are encoded by PEX genes. An autophagy-related process, termed pexophagy, is responsible for the selective removal of peroxisomes from the cell. Several genes involved in pexophagy are also required for autophagy and are collectively known as ATG genes. We have re-analysed the Aspergillus nidulans genome for the presence of PEX and ATG genes and have identified a number of previously missed genes. Also, we manually determined the correct intron positions in each identified gene. The data show that in A. nidulans and related fungi the basic set of genes involved in peroxisome biogenesis or degradation are conserved. However, both processes have features that more closely resemble organelle formation/degradation in mammals rather than yeast. Thus, filamentous fungi like A. nidulans are ideal model systems for peroxisome homeostasis in man. (C) 2008 Elsevier Inc. All rights reserved.
机译:真菌微体(过氧化物酶体)是可诱导的细胞器,可根据营养提示而增殖。与过氧化物酶体生物发生/增殖有关的蛋白质称为过氧化物酶,由PEX基因编码。自噬相关过程,称为exophophagy,负责从细胞中选择性清除过氧化物酶体。自噬还需要一些与基因表达有关的基因,这些基因统称为ATG基因。我们已经重新分析了构巢曲霉基因组中PEX和ATG基因的存在,并鉴定了许多以前遗漏的基因。同样,我们手动确定了每个鉴定基因中正确的内含子位置。数据表明,在构巢曲霉和相关真菌中,与过氧化物酶体生物发生或降解有关的基本基因是保守的。但是,这两个过程都具有与哺乳动物而非酵母中的细胞器形成/降解更为相似的特征。因此,像构巢曲霉这样的丝状真菌是人体内过氧化物酶体内平衡的理想模型系统。 (C)2008 Elsevier Inc.保留所有权利。

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