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An N-Terminal Dimerization Domain Permits Homeodomain Proteins To Choose Compatible Partners and Initiate Sexual Development in the Mushroom Coprinus cinereus.

机译:N端二聚体结构域允许Homeodomain蛋白选择合适的伴侣并在蘑菇灰鬼伞中启动性发育。

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摘要

The A mating-type locus of the mushroom Coprinus cinereus contains three or more paralogous pairs of genes encoding two families of homeodomain proteins (HD1 and HD2). A successful mating brings together different allelic forms of at least one gene, and this is sufficient to trigger initial steps in sexual development. Previous studies have suggested that development is regulated by heterodimerization between HD1 and HD2 proteins. In this report, we describe 5[prime] gene deletions and 5[prime] end exchanges showing that the N-terminal regions of the proteins are essential for choosing a compatible partner but not for regulating gene transcription. Using an in vitro glutathione S-transferase association assay, we demonstrated heterodimerization between HD1 and HD2 proteins and found that heterodimerization only occurs between compatible protein combinations. The N-terminal regions of the proteins were sufficient to mediate dimerization, and N-terminal swaps resulted in a predicted change in dimerization specificity. By analyzing the N-terminal amino acid sequences of HD1 proteins, we identified two potential coiled-coil motifs whose relative positions vary in paralogous proteins but are both required for in vivo function.
机译:蘑菇灰粉鬼伞的A交配型基因座包含三对或更多对同源基因,它们编码两个同源域蛋白家族(HD1和HD2)。成功的交配会聚集至少一个基因的不同等位基因形式,这足以触发性发育的初始步骤。先前的研究表明,发育受HD1和HD2蛋白之间的异源二聚化作用调节。在此报告中,我们描述了5 [prime]基因缺失和5 [prime]末端交换,表明蛋白质的N末端区域对于选择相容性伴侣而不是调节基因转录至关重要。使用体外谷胱甘肽S-转移酶缔合试验,我们证明了HD1和HD2蛋白之间的异源二聚化,发现异源二聚化仅发生在兼容的蛋白组合之间。蛋白质的N末端区域足以介导二聚化,并且N末端交换导致预测的二聚化特异性变化。通过分析HD1蛋白的N端氨基酸序列,我们鉴定了两个潜在的卷曲螺旋基序,它们的相对位置在旁系同源蛋白中有所不同,但都是体内功能所必需的。

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