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酵母DEAD-box蛋白Has1p的ATP酶及解旋活性的表征与保守基序作用的分析

Characterization of the ATPase and unwinding activities of the yeast DEAD-box protein Has1p and the analysis of the roles of the conserved motifs.

作者信息

Rocak Sanda, Emery Bertrand, Tanner N Kyle, Linder Patrick

机构信息

Departement de Microbiologie et Médecine Moléculaire, Centre Médical Universitaire 1, rue Michel Servet, CH-1211 Geneve 4, Switzerland.

出版信息

Nucleic Acids Res. 2005 Feb 17;33(3):999-1009. doi: 10.1093/nar/gki244. Print 2005.

Abstract

The yeast DEAD-box protein Has1p is required for the maturation of 18S rRNA, the biogenesis of 40S r-subunits and for the processing of 27S pre-rRNAs during 60S r-subunit biogenesis. We purified recombinant Has1p and characterized its biochemical activities. We show that Has1p is an RNA-dependent ATPase in vitro and that it is able to unwind RNA/DNA duplexes in an ATP-dependent manner. We also report a mutational analysis of the conserved residues in motif I (86AKTGSGKT93), motif III (228SAT230) and motif VI (375HRVGRTARG383). The in vivo lethal K92A substitution in motif I abolishes ATPase activity in vitro. The mutations S228A and T230A partially dissociate ATPase and helicase activities, and they have cold-sensitive and lethal growth phenotypes, respectively. The H375E substitution in motif VI significantly decreased helicase but not ATPase activity and was lethal in vivo. These results suggest that both ATPase and unwinding activities are required in vivo. Has1p possesses a Walker A-like motif downstream of motif VI (383GTKGKGKS390). K389A substitution in this motif significantly increases the Has1p activity in vitro, which indicates it potentially plays a role as a negative regulator. Finally, rRNAs and poly(A) RNA serve as the best stimulators of the ATPase activity of Has1p among the tested RNAs.

摘要

酵母DEAD盒蛋白Has1p是18S rRNA成熟、40S核糖体亚基生物合成以及60S核糖体亚基生物合成过程中27S前体rRNA加工所必需的。我们纯化了重组Has1p并对其生化活性进行了表征。我们发现Has1p在体外是一种RNA依赖性ATP酶,并且能够以ATP依赖性方式解开RNA/DNA双链体。我们还报告了对基序I(86AKTGSGKT93)、基序III(228SAT230)和基序VI(375HRVGRTARG383)中保守残基的突变分析。基序I中体内致死性的K92A取代消除了体外ATP酶活性。S228A和T230A突变分别部分解离了ATP酶和螺旋酶活性,并且它们分别具有冷敏感和致死生长表型。基序VI中的H375E取代显著降低了螺旋酶活性但不影响ATP酶活性,并且在体内是致死的。这些结果表明体内需要ATP酶和解旋活性。Has1p在基序VI(383GTKGKGKS390)下游具有一个类似Walker A的基序。该基序中的K389A取代显著增加了Has1p在体外的活性,这表明它可能作为负调节因子发挥作用。最后,在测试的RNA中,rRNA和聚腺苷酸RNA是Has1p ATP酶活性的最佳刺激物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa66/549409/25a9f606d9e0/gki244f1.jpg

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