首页> 外文期刊>Nucleic Acids Research >The highly conserved DNA-binding domains of A-, B- and c-Myb differ with respect to DNA-binding, phosphorylation and redox properties.
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The highly conserved DNA-binding domains of A-, B- and c-Myb differ with respect to DNA-binding, phosphorylation and redox properties.

机译:A-,B-和c-Myb高度保守的DNA结合结构域在DNA结合,磷酸化和氧化还原特性方面有所不同。

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摘要

In the Myb family, as in other families of transcription factors sharing similar DNA-binding domains (DBDs), diversity of function is believed to rely mainly on the less conserved parts of the proteins and on their distinct patterns of expression. However, small conserved differences between DBDs of individual members could play a role in fine-tuning their function. We have compared the highly conserved DBDs of the three vertebrate Myb proteins (A-, B- and c-Myb) and found distinct functional differences. While A- and c-Myb behaved virtually identically in a variety of DNA-binding assays, B-Myb formed complexes of comparatively lower stability, rapidly dissociating under competitive conditions and showing less tolerance to binding site variations. The three protein domains also differed as substrates for protein kinases. Whereas PKA in theory should target the DBDs of A- and c-Myb, but not B-Myb, only c-Myb was phosphorylated by PKA. CK2 phosphorylated all three proteins, although on different sites in the N-terminal region. Finally, B-Myb was remarkably sensitive to cysteine-directed oxidation compared to the other Myb proteins. Our data suggest that the small differences that have evolved between individual Myb family members lead to clear differences in DBD properties even if their sequence recognition remains the same.
机译:在Myb家族中,就像在其他转录因子家族中共享相似的DNA结合结构域(DBD)一样,功能的多样性被认为主要依赖于蛋白质保守性较低的部分及其独特的表达方式。但是,单个成员的DBD之间小的保守差异可以在微调其功能中起作用。我们已经比较了三种脊椎动物Myb蛋白(A-,B-和c-Myb)的高度保守的DBD,并发现了明显的功能差异。尽管A-和c-Myb在各种DNA结合测定中的行为几乎相同,但B-Myb形成了稳定性相对较低的复合物,在竞争条件下迅速解离,并且对结合位点变异的耐受性较低。这三个蛋白结构域也不同,它们是蛋白激酶的底物。从理论上讲,PKA应该针对A-和c-Myb的DBD,而不是B-Myb,而PKA仅磷酸化c-Myb。 CK2磷酸化了所有三种蛋白质,尽管在N端区域的位置不同。最后,与其他Myb蛋白相比,B-Myb对半胱氨酸定向氧化非常敏感。我们的数据表明,即使Myb家族成员之间的序列识别保持不变,它们在Myb家族成员之间逐渐形成的微小差异也会导致DBD属性的明显差异。

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