首页> 外文期刊>Nucleic Acids Research >Dimerization of the testis brain RNA-binding protein (translin) is mediated through its C-terminus and is required for DNA- and RNA-binding.
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Dimerization of the testis brain RNA-binding protein (translin) is mediated through its C-terminus and is required for DNA- and RNA-binding.

机译:睾丸脑RNA结合蛋白(translin)的二聚体通过其C端介导,是DNA和RNA结合所必需的。

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Testis brain-RNA-binding protein (TB-RBP) is a single-stranded DNA- and RNA-binding protein that is involved in chromosomal translocations, mRNA transport and translational regulation. Here we show from in vitro and in vivo protein binding studies that TB-RBP dimers are the minimum structural unit needed for DNA- and RNA-binding. Truncation studies demonstrate that the C-terminus of 55 amino acids of TB-RBP is essential, but not sufficient for DNA- or RNA-binding, and deletion of the leucine zipper motif in the C-terminus abolishes DNA- and RNA-binding. Changing cysteine 225 in the C-terminus to alanine does not significantly reduce DNA- or RNA-binding, but reduces the stability of the dimer. We conclude that the leucine zipper motif is required to maintain two molecules of TB-RBP as a dimer which is stabilized by a disulfide bond involving cysteine 225.
机译:睾丸脑RNA结合蛋白(TB-RBP)是一种单链DNA和RNA结合蛋白,参与染色体易位,mRNA转运和翻译调节。在这里,我们从体内和体外的蛋白质结合研究表明,TB-RBP二聚体是DNA和RNA结合所需的最小结构单元。截断研究表明,TB-RBP的55个氨基酸的C端是必不可少的,但不足以实现DNA或RNA的结合,C端亮氨酸拉链基序的缺失消除了DNA和RNA的结合。将C端的半胱氨酸225更改为丙氨酸不会显着降低DNA或RNA的结合,但会降低二聚体的稳定性。我们得出结论,需要亮氨酸拉链基序来维持两个TB-RBP分子为二聚体,并通过涉及半胱氨酸225的二硫键使其稳定化。

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