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Dual Sets of Chimeric Alleles Identify Specificity Sequences for the bE and bW Mating and Pathogenicity Genes of Ustilago maydis

机译:嵌合等位基因的双套识别可能的乌贼属的bE和bW交配和致病性基因的特异性序列。

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摘要

The b mating-type locus of the fungal plant pathogen Ustilago maydis encodes two multiallelic gene products, bE and bW, that control the formation and maintenance of the infectious cell type. Dimerization via the N-terminal regions of bE and bW proteins encoded by alleles of different specificities establishes a homeodomain-containing transcription factor. The bE and bW products encoded by alleles of like specificities fail to dimerize. We constructed sets of chimeric alleles for the bE1 and bE2 genes and for the bW1 and bW2 genes to identify sequences that control specificity. The mating behavior of strains carrying chimeric alleles identified three classes of specificity: b2 (class I), specificity different from either parental type (class II), and b1 (class III). Crosses between strains carrying bE and bW chimeric alleles identified two short blocks of amino acids that influence specificity and that are located in the N-terminal variable regions of the b proteins. Comparisons of pairs of chimeric alleles encoding polypeptides differing in specificity and differing at single amino acid positions identified 16 codon positions that influence the interaction between bE and bW. Fifteen of these positions lie within the blocks of amino acids identified by crosses between the strains carrying chimeric alleles. Overall, this work provides insight into the organization of the regions that control recognition.
机译:真菌植物病原体Ustilago的b交配型基因座可编码两个多等位基因产物bE和bW,它们控制传染性细胞类型的形成和维持。通过不同特异性等位基因编码的bE和bW蛋白N端区域的二聚化,建立了一个含同源结构域的转录因子。由具有相似特异性的等位基因编码的bE和bW产物无法二聚。我们构建了bE1和bE2基因以及bW1和bW2基因的嵌合等位基因组,以鉴定控制特异性的序列。携带嵌合等位基因的菌株的交配行为鉴定出三类特异性:b2(I类),不同于亲本类型(II类)和b1(III类)的特异性。携带bE和bW嵌合等位基因的菌株之间的杂交鉴定了两个短的氨基酸区块,这些氨基酸影响特异性并且位于b蛋白的N末端可变区。编码特异性不同且在单个氨基酸位置不同的多肽的嵌合等位基因对的比较确定了影响bE和bW之间相互作用的16个密码子位置。这些位置中的十五个位于通过携带嵌合等位基因的菌株之间的杂交所鉴定的氨基酸区块内。总体而言,这项工作可以深入了解控制识别的区域的组织。

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