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Nucleolin is a matrix attachment region DNA-binding protein that specifically recognizes a region with high base-unpairing potential.

机译:核仁蛋白是一种基质附着区域DNA结合蛋白,可特异性识别具有高碱基不配对潜力的区域。

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摘要

A DNA affinity column containing a synthetic double-stranded nuclear matrix attachment region (MAR) was used to purify a 100-kDa protein from human erythroleukemia K562 cells. This protein was identified as nucleolin, the key nucleolar protein of dividing cells, which is thought to control rRNA gene transcription and ribosome assembly. Nucleolin is known to bind RNA and single-stranded DNA. We report here that nucleolin is also a MAR-binding protein. It binds double-stranded MARs from different species with high affinity. Nucleolin effectively distinguishes between a double-stranded wild-type synthetic MAR sequence with a high base-unpairing potential and its mutated version that has lost the unpairing capability but is still A+T rich. Thus, nucleolin is not merely an A+T-rich sequence-binding protein but specifically binds the base-unpairing region of MARs. This binding specificity is similar to that of the previously cloned tissue-specific MAR-binding protein SATB1. Unlike SATB1, which binds only double-stranded MARs, nucleolin binds the single-stranded T-rich strand of the synthetic MAR probe approximately 45-fold more efficiently than its complementary A-rich strand, which has an affinity comparable to that of the double-stranded form of the MAR. In contrast to the high selectivity of binding to double-stranded MARs, nucleolin shows only a small but distinct sequence preference for the T-rich strand of the wild-type synthetic MAR over the T-rich strand of its mutated version. The affinity to the T-rich synthetic MAR is severalfold higher than to its corresponding RNA and human telomere DNA. Quantitative cellular fractionation and extraction experiments indicate that nucleolin is present both as a soluble protein and tightly bound to the matrix, similar to other known MAR-binding proteins.
机译:含有合成双链核基质附着区(MAR)的DNA亲和柱用于从人红白血病K562细胞中纯化100 kDa蛋白。该蛋白被鉴定为核仁蛋白,它是分裂细胞的关键核仁蛋白,被认为可以控制rRNA基因的转录和核糖体装配。已知核仁蛋白结合RNA和单链DNA。我们在这里报告,核仁素也是MAR结合蛋白。它以高亲和力结合不同物种的双链MAR。 Nucleolin可有效区分具有高碱基不配对潜力的双链野生型合成MAR序列和已失去解除配对能力但仍富含A + T的突变型。因此,核仁素不仅是富含A + T的序列结合蛋白,而且还特异性结合MARs的碱基不配对区。这种结合特异性类似于先前克隆的组织特异性MAR结合蛋白SATB1。与仅结合双链MAR的SATB1不同,核仁素结合合成MAR探针的单链T富链的效率比其互补的A富链的结合效率高约45倍,后者的亲和力可与双链MAR媲美。 -MAR的多股形式。与与双链MARs结合的高选择性相反,相比于突变型的T-富集链,核仁素对野生型合成MAR的T-富集链仅显示了很小但明显的序列偏好。与富含T的合成MAR的亲和力与其对应的RNA和人类端粒DNA的亲和力高出几倍。定量的细胞分级分离和提取实验表明,核仁素既以可溶性蛋白形式存在,又与基质紧密结合,类似于其他已知的MAR结合蛋白。

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