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首页> 外文期刊>Journal of Molecular Biology >Biochemical Differences and Similarities between the DEAD-Box Helicase Orthologs DDX3X and Ded1p
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Biochemical Differences and Similarities between the DEAD-Box Helicase Orthologs DDX3X and Ded1p

机译:死箱螺旋酶直径DDX3X和DED1P之间的生化差异和相似性

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Abstract DDX3X is a conserved DEAD-box RNA helicase involved in translation initiation and other processes of RNA metabolism. Mutations in human DDX3X and deregulation of its expression are linked to tumorigenesis and intellectual disability. The protein is also targeted by diverse viruses. Previous studies demonstrated helicase and NTPase activities for DDX3X, but important biochemical features of the enzyme remain unclear. Here, we systematically characterize enzymatic activities of human DDX3X and compare these to its closely related Saccharomyces cerevisiae ortholog Ded1p. We show that DDX3X, like Ded1p, utilizes exclusively adenosine triphosphates to unwind helices, oligomerizes to function as efficient RNA helicase, and does not unwind DNA duplexes. The ATPase activity of DDX3X is markedly stimulated by RNA and weaker by DNA, although DNA binds to the enzyme. For RNA unwinding, DDX3X shows a greater preference than Ded1p for substrates with unpaired regions 3′ to the duplex over those with 5′ unpaired regions. DDX3X separates longer RNA duplexes faster than Ded1p and is less potent than Ded1p in facilitating strand annealing. Our results reveal that the biochemical activities of human DDX3X are typical for DEAD-box RNA helicases, but diverge quantitatively from its highly similar S. cerevisiae ortholog Ded1p. Graphical abstract Display Omitted Highlights ? Systematic characterization of helicase activity of full-length, human DDX3X ? DDX3X behaves like a typical DEAD-box helicase and does not unwind DNA duplexes. ? DDX3X, like its yeast ortholog Ded1p, unwinds RNA as oligomer. ? DDX3X preferentially unwinds 3′-tailed RNA substrates and does not promote strand annealing.
机译:摘要DDX3X是一个节约的死箱RNA螺旋酶,参与翻译启动和其他RNA代谢过程。人体DDX3X中的突变和其表达的病程与肿瘤引发和智力残疾有关。蛋白质也是通过不同病毒的靶向。以前的研究表明了DDX3X的螺旋酶和NTPase活性,但酶的重要生化特征仍然不清楚。在这里,我们系统地表征了人类DDX3x的酶活性,并将这些与其与其紧密相关的糖酵母酿酒酵母进行了比较。我们表明DDX3X,如DED1P,仅利用腺苷三磷酸盐来放松螺旋,低聚以用作有效的RNA螺旋酶,并且不展开DNA双链体。虽然DNA与酶结合,但DDX3X的ATP酶活性明显受到RNA和较弱的刺激。对于RNA斩波,DDX3X显示比具有未配对区域3'的基板的DED1P更大的偏好,在与5英寸未配对区域上的那些。 DDX3x将较长的RNA双工分离得比DED1P快,并且比促进绞线退火的DED1P更少有效。我们的结果表明,人DDX3X的生化活性是死箱RNA螺旋酶的典型,但总量地与其高度相似的S.Cerevisiae OrthologDED1P定量偏离。图形抽象显示省略了亮点?全长螺旋酶活性的系统特征,人体DDX3x? DDX3x的行为类似于典型的死箱螺旋酶,并且不会放松DNA双工。还是DDX3X,如其酵母OrthologDED1P,将RNA展示为低聚物。还是DDX3X优先退出3'尾RNA基材,并不能促进绞线退火。

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