首页> 外文期刊>Journal of cellular biochemistry. >Cellular nucleic acid binding protein binds G-rich single-stranded nucleic acids and may function as a nucleic acid chaperone.
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Cellular nucleic acid binding protein binds G-rich single-stranded nucleic acids and may function as a nucleic acid chaperone.

机译:细胞核酸结合蛋白结合富G的单链核酸,并且可以充当核酸伴侣。

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Cellular nucleic acid binding protein (CNBP) is a small single-stranded nucleic acid binding protein made of seven Zn knuckles and an Arg-Gly rich box. CNBP is strikingly conserved among vertebrates and was reported to play broad-spectrum functions in eukaryotic cells biology. Neither its biological function nor its mechanisms of action were elucidated yet. The main goal of this work was to gain further insights into the CNBP biochemical and molecular features. We studied Bufo arenarum CNBP (bCNBP) binding to single-stranded nucleic acid probes representing the main reported CNBP putative targets. We report that, although bCNBP is able to bind RNA and single-stranded DNA (ssDNA) probes in vitro, it binds RNA as a preformed dimer whereas both monomer and dimer are able to bind to ssDNA. A systematic analysis of variant probes shows that the preferred bCNBP targets contain unpaired guanosine-rich stretches. These data expand the knowledge about CNBP binding stoichiometry and begins to dissect the main features of CNBP nucleic acid targets. Besides, we show that bCNBP presents a highly disordered predicted structure and promotes the annealing and melting of nucleic acids in vitro. These features are typical of proteins that function as nucleic acid chaperones. Based on these data, we propose that CNBP may function as a nucleic acid chaperone through binding, remodeling, and stabilizing nucleic acids secondary structures. This novel CNBP biochemical activity broadens the field of study about its biological function and may be the basis to understand the diverse ways in which CNBP controls gene expression.
机译:细胞核酸结合蛋白(CNBP)是一种小的单链核酸结合蛋白,由七个锌指和一个富含Arg-Gly的盒子组成。 CNBP在脊椎动物中非常保守,并且据报道在真核细胞生物学中起着广谱功能。尚未阐明其生物学功能及其作用机理。这项工作的主要目的是获得对CNBP生化和分子特征的进一步了解。我们研究了中华大蟾蜍CNBP(bCNBP)与代表主要报道的CNBP假定靶标的单链核酸探针的结合。我们报告,尽管bCNBP能够在体外结合RNA和单链DNA(ssDNA)探针,但它结合RNA作为预先形成的二聚体,而单体和二聚体均能够与ssDNA结合。变异探针的系统分析显示,首选的bCNBP靶标包含未配对的富含鸟苷的序列。这些数据扩展了有关CNBP结合化学计量的知识,并开始剖析CNBP核酸靶标的主要特征。此外,我们表明bCNBP呈现高度无序的预测的结构,并促进核酸的体外退火和解链。这些特征是充当核酸伴侣的蛋白质的典型特征。基于这些数据,我们建议CNBP可以通过结合,重塑和稳定核酸二级结构来充当核酸伴侣。这种新的CNBP生化活性拓宽了其生物学功能的研究领域,可能是了解CNBP控制基因表达的多种方式的基础。

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