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Khd4的串联KH结构域识别AUACCC,对玉米黑粉菌的形态调控和致病性至关重要。

Tandem KH domains of Khd4 recognize AUACCC and are essential for regulation of morphology as well as pathogenicity in Ustilago maydis.

作者信息

Vollmeister Evelyn, Haag Carl, Zarnack Kathi, Baumann Sebastian, König Julian, Mannhaupt Gertrud, Feldbrügge Michael

机构信息

Max Planck Institute for Terrestrial Microbiology, Department of Organismic Interactions, 35043 Marburg, Germany.

出版信息

RNA. 2009 Dec;15(12):2206-18. doi: 10.1261/rna.1817609. Epub 2009 Oct 23.

Abstract

RNA-binding proteins constitute key factors of the post-transcriptional machinery. These regulatory proteins recognize specific elements within target transcripts to promote, for example, maturation, translation, or stability of mRNAs. In Ustilago maydis, evidence is accumulating that post-transcriptional processes are important to determine pathogenicity. Deletion of khd4, encoding a predicted RNA-binding protein with five K homology (KH) domains, causes aberrant cell morphology and reduced virulence. Here, we demonstrate that Khd4 recognizes the sequence AUACCC in vivo via its tandem KH domains 3 and 4. This sequence most likely functions as a regulatory RNA element in U. maydis, since it accumulates in 3' untranslated regions. Consistently, an independent mRNA expression profiling approach revealed that the binding motif is significantly enriched in transcripts showing altered expression levels in khd4Delta strains. Since the vast majority of potential Khd4 target mRNAs exhibit increased amounts in deletion mutants, Khd4 might promote mRNA instability. Mutants that fail to bind AUACCC resemble deletion mutants, which exhibit altered cell morphology, disturbed filamentous growth, and severely reduced virulence. Hence, RNA binding is essential for function of Khd4, stressing the importance of post-transcriptional control in regulating morphology and pathogenicity.

摘要

RNA结合蛋白是转录后机制的关键因素。这些调控蛋白识别靶转录本中的特定元件,以促进例如mRNA的成熟、翻译或稳定性。在玉米黑粉菌中,越来越多的证据表明转录后过程对于确定致病性很重要。编码具有五个K同源(KH)结构域的预测RNA结合蛋白的khd4缺失会导致异常的细胞形态和毒力降低。在这里,我们证明Khd4在体内通过其串联的KH结构域3和4识别序列AUACCC。该序列很可能在玉米黑粉菌中作为一种调控RNA元件发挥作用,因为它在3'非翻译区积累。一致地,一种独立的mRNA表达谱分析方法显示,在khd4Delta菌株中表达水平发生改变的转录本中,结合基序显著富集。由于绝大多数潜在的Khd4靶mRNA在缺失突变体中含量增加,Khd4可能促进mRNA的不稳定性。无法结合AUACCC的突变体类似于缺失突变体,表现出改变的细胞形态、紊乱的丝状生长和严重降低的毒力。因此,RNA结合对于Khd4的功能至关重要,强调了转录后调控在调节形态和致病性方面的重要性。

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