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The Highly Similar Arabidopsis Homologs of Trithorax ATX1 and ATX2 Encode Proteins with Divergent Biochemical Functions

机译:Trithorax ATX1和ATX2高度相似的拟南芥同源基因编码具有不同生化功能的蛋白质

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摘要

Gene duplication followed by functional specialization is a potent force in the evolution of biological diversity. A comparative study of two highly conserved duplicated genes, ARABIDOPSIS TRITHORAX-LIKE PROTEIN1 (ATX1) and ATX2, revealed features of both partial redundancy and of functional divergence. Although structurally similar, their regulatory sequences have diverged, resulting in distinct temporal and spatial patterns of expression of the ATX1 and ATX2 genes. We found that ATX2 methylates only a limited fraction of nucleosomes and that ATX1 and ATX2 influence the expression of largely nonoverlapping gene sets. Even when coregulating shared targets, ATX1 and ATX2 may employ different mechanisms. Most remarkable is the divergence of their biochemical activities: both proteins methylate K4 of histone H3, but while ATX1 trimethylates it, ATX2 dimethylates it. ATX2 and ATX1 provide an example of separated K4 di from K4 trimethyltransferase activity.
机译:基因复制后进行功能专一化是生物多样性进化的强大力量。对两个高度保守的重复基因ARABIDOPSIS TRITHORAX-like PROTEIN1(ATX1)和ATX2的比较研究,揭示了部分冗余和功能差异的特征。尽管在结构上相似,但它们的调控序列却有所不同,从而导致ATX1和ATX2基因表达的时空格局截然不同。我们发现,ATX2仅使一部分核小体甲基化,并且ATX1和ATX2影响很大程度上不重叠的基因集的表达。即使在整合共享目标时,ATX1和ATX2也会采用不同的机制。最显着的是它们的生化活性的差异:两种蛋白都将组蛋白H3的甲基化为K4,而ATX1则为三甲基化,而ATX2则为二甲基化。 ATX2和ATX1提供了一个从K4三甲基转移酶活性中分离出K4 di的例子。

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