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首页> 外文期刊>Human Molecular Genetics >Did nucleotides or amino acids drive evolutionary conservation of the WT1 +/-KTS alternative splice?
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Did nucleotides or amino acids drive evolutionary conservation of the WT1 +/-KTS alternative splice?

机译:核苷酸或氨基酸是否推动了WT1 +/- KTS替代剪接的进化保守性?

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摘要

Evolutionary comparisons frequently pinpoint crucial parts of a protein but, even within coding regions, nucleotides can do more than determine amino acid sequence. One highly conserved feature of the Wilms' tumour suppressor gene, WT1, is the potential, following alternative pre-mRNA splicing, to insert three amino acids (KTS) between the third and fourth zinc fingers. The nucleotides at this position simultaneously define amino acids and the alternative splice site. At the protein level this insertion influences DNA binding affinity and specificity, protein-protein interactions and subnuclear localization. Mutations within the +/-KTS splice junction lead to severe urogenital developmental abnormalities such as Frasier syndrome, indicating that the isoform ratio is critical for wild-type function. Using a series of site-directed mutations in both the genomic and cDNA context, the nucleotide-amino acid relationship was investigated. Mutational analysis within the cDNA suggests that the precise amino acids inserted may not be critical, but rather the disruption of the zinc finger structure alone may be sufficient to generate proteins with different in vitro properties. However, analysis within the genomic context suggests that the precise structure of the splice junction is crucial in retaining the balance between the isoforms, and this may account for the high nucleo-tide conservation of this unusual gene structure from fish to mammals.
机译:进化比较经常可以查明蛋白质的关键部分,但即使在编码区域内,核苷酸的作用还不止于确定氨基酸序列。 Wilms肿瘤抑制基因WT1的一个高度保守的特征是,在替代性的pre-mRNA剪接之后,有可能在第三个锌指和第四个锌指之间插入三个氨基酸(KTS)。该位置的核苷酸同时定义了氨基酸和其他剪接位点。在蛋白质水平,这种插入会影响DNA结合亲和力和特异性,蛋白质-蛋白质相互作用和亚核定位。 +/- KTS剪接点内的突变会导致严重的泌尿生殖系统发育异常,例如Frasier综合征,这表明同工型比率对于野生型功能至关重要。使用在基因组和cDNA上下文中的一系列定点突变,研究了核苷酸-氨基酸的关系。 cDNA内的突变分析表明,插入的精确氨基酸可能并不关键,但仅破坏锌指结构可能足以产生具有不同体外特性的蛋白质。然而,在基因组范围内的分析表明,剪接点的精确结构对于保持同工型之间的平衡至关重要,这可能解释了这种从鱼类到哺乳动物这种异常基因结构的高度核苷酸保守性。

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