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Cryptic peroxisomal targeting via alternative splicing and stop codon read-through in fungi

机译:通过选择性剪接进行隐性过氧化物酶体靶向,并阻止真菌中的密码子通读

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摘要

Peroxisomes are eukaryotic organelles important for the metabolism of long-chain fatty adds. Here we show that in numerous fungal species, several core enzymes of glycolysis, including glyceraldehyde-3-phosphate dehydrogenase (GAPDH) and 3-phosphoglycerate kinase (PGK), reside in both the cytoplasm and peroxisomes. We detected in these enzymes cryptic type 1 peroxisomal targeting signals (PTS1), which are activated by post-transcriptional processes. Notably, the molecular mechanisms that generate the peroxisomal isoforms vary considerably among different species. In the basidiomycete plant pathogen Ustilago maydis, peroxisomal targeting of Pgkl results from ribosomal read-through, whereas alternative splicing generates the PTS1 of Gapdh. In the filamentous ascomycete Aspergillus nidulans, peroxisomal targeting of these enzymes is achieved by exactly the opposite mechanisms. We also detected PTS1 motifs in the glycolytic enzymes triose-phosphate isomerase and fructose-bisphosphate aldolase. U. maydis mutants lacking the peroxisomal isoforms of Gapdh or Pgkl showed reduced virulence. In addition, mutational analysis suggests that GAPDH, together with other peroxisomal NADH-dependent dehydro-genases, has a role in redox homeostasis. Owing to its hidden nature, partial peroxisomal targeting of well-studied cytoplasmic enzymes has remained undetected. Thus, we anticipate that further bona fide cytoplasmic proteins exhibit similar dual targeting.
机译:过氧化物酶体是真核细胞器,对长链脂肪添加物的代谢很重要。在这里,我们显示在许多真菌物种中,糖酵解的几种核心酶,包括3-磷酸甘油醛脱氢酶(GAPDH)和3-磷酸甘油酸酯激酶(PGK),都存在于细胞质和过氧化物酶体中。我们在这些酶中检测到了隐型1过氧化物酶体靶向信号(PTS1),该信号被转录后过程激活。值得注意的是,在不同物种之间,产生过氧化物酶体同工型的分子机制差异很大。在担子菌植物病原体Ustilago maydis中,Pgkl的过氧化物酶体靶向来自核糖体通读,而选择性剪接产生了Gapdh的PTS1。在丝状子囊菌构巢曲霉中,通过完全相反的机制来实现这些酶的过氧化物酶体靶向。我们还检测了糖酵解酶磷酸三糖磷酸异构酶和果糖二磷酸醛缩酶中的PTS1主题。缺少Gapdh或Pgkl的过氧化物酶体同工型的U. maydis突变体显示出降低的毒力。此外,突变分析表明,GAPDH与其他过氧化物酶体NADH依赖的脱氢酶一起在氧化还原稳态中起作用。由于其隐藏的性质,仍未检测到经过充分研究的细胞质酶的部分过氧化物酶体靶向。因此,我们预期进一步的真正胞质蛋白表现出相似的双重靶向。

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  • 来源
    《Nature》 |2012年第7399期|p.522-525|共4页
  • 作者单位

    Department of Biology, Philipps University Marburg, Karl-von-Frisch-Strasse 8, D-35032 Marburg, Germany;

    Department of Biology, Philipps University Marburg, Karl-von-Frisch-Strasse 8, D-35032 Marburg, Germany;

    Department of Biology, Philipps University Marburg, Karl-von-Frisch-Strasse 8, D-35032 Marburg, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 02:54:08

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