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首页> 外文期刊>FEBS letters. >Kaiso uses all three zinc fingers and adjacent sequence motifs for high affinity binding to sequence-specific and methyl-CpG DNA targets
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Kaiso uses all three zinc fingers and adjacent sequence motifs for high affinity binding to sequence-specific and methyl-CpG DNA targets

机译:Kaiso使用所有三个锌指和相邻的序列基序,以高亲和力结合序列特异性和甲基CpG DNA靶标

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摘要

Kaiso is a Cys 2His 2 zinc finger (ZF) protein that mediates methyl-CpG-dependent and sequence-specific transcriptional repression. As a first step towards elucidating the structural and molecular basis for recognition of these disparate DNA sequences, the minimal binding region of Kaiso was identified and optimal DNA sequences for high-affinity interactions were characterized. Contrary to previous findings, Kaiso requires all three zinc fingers plus adjacent protein regions for DNA recognition. An N-terminal extension contributes to structural stability, while an extended C-terminal region augments DNA binding. Complexes formed between the optimized Kaiso construct and both DNA sequences are suitable for future structural evaluation.
机译:Kaiso是一种Cys 2His 2锌指(ZF)蛋白,可介导甲基CpG依赖性和序列特异性转录抑制。作为阐明识别这些不同DNA序列的结构和分子基础的第一步,确定了Kaiso的最小结合区,并表征了用于高亲和力相互作用的最佳DNA序列。与以前的发现相反,Kaiso需要三个锌指和相邻的蛋白质区域才能进行DNA识别。 N末端延伸有助于结构稳定性,而延伸的C末端区域增强DNA结合。在优化的Kaiso构建体与两个DNA序列之间形成的复合物适用于将来的结构评估。

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