人类Dicer解旋酶结构域具有ATP水解和单链核酸结合的功能。

IF 4.4 1区 生物学 Q1 BIOLOGY
Kinga Ciechanowska, Agnieszka Szczepanska, Kamil Szpotkowski, Klaudia Wojcik, Anna Urbanowicz, Anna Kurzynska-Kokorniak
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引用次数: 0

摘要

背景:脊椎动物有一个Dicer同源物,可以产生microRNAs (miRNAs)和小干扰rna (sirna),而在苍蝇和植物中发现了多个Dicer样蛋白。在这里,我们主要关注人类Dicer (hDicer)解旋酶域的功能。已知hDicer的解旋酶结构域通过与其顶端环区相互作用来识别pre-miRNA底物。除了与典型底物相互作用外,hDicer解旋酶结构域还被认为可以结合许多不同的细胞rna;然而,对hDicer解旋酶结构域对不同核酸的生化活性和底物特异性的全面研究尚未开展。结果:在这里,我们揭示了全长hDicer通过其解旋酶结构域水解ATP。hDicer的atp酶活性只能在低周转率条件下观察到。据我们所知,这是第一次在脊椎动物Dicers中报道这种活动。我们还表明,hDicer解旋酶结构域结合单链而不是双链rna和dna,并且这种结合活性可能不依赖于核苷酸。此外,hDicer解旋酶结构域可能影响它所结合的RNA的结构。结论:hDicer对atp酶活性的保存表明,这种酶在细胞中发挥的功能比目前认为的要多。我们的发现为未来的研究开辟了新的途径,旨在确定hDicer的细胞活性,这些活性可能与这些新描述的生化特性有关:ATP水解和单链核酸结合活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The human Dicer helicase domain is capable of ATP hydrolysis and single-stranded nucleic acid binding.

Background: Vertebrates have one Dicer ortholog that generates both microRNAs (miRNAs) and small interfering RNAs (siRNAs), in contrast to the multiple Dicer-like proteins found in flies and plants. Here, we focus on the functions of the human Dicer (hDicer) helicase domain. The helicase domain of hDicer is known to recognize pre-miRNA substrates through interactions with their apical loop regions. Besides interacting with canonical substrates, the hDicer helicase domain has also been suggested to bind many different cellular RNAs; however, a comprehensive study of the biochemical activities and substrate specificity of the hDicer helicase domain towards different nucleic acids has yet to be undertaken.

Results: Here, we reveal that full-length hDicer, through its helicase domain, hydrolyzes ATP. The ATPase activity of hDicer can only be observed under low-turnover conditions. To the best of our knowledge, this is the first time this activity has been reported for vertebrate Dicers. We also show that the hDicer helicase domain binds single- but not double-stranded RNAs and DNAs and that this binding activity presumably is not nucleotide-dependent. Moreover, the hDicer helicase domain may influence the structure of the RNA to which it binds.

Conclusions: Preservation of ATPase activity by hDicer suggests that this enzyme performs many more functions in the cell than is currently assumed. Our findings open new avenues for future studies aimed at defining the cellular activities of hDicer that may be associated with these newly described biochemical properties: ATP hydrolysis and single-stranded nucleic acid binding activities.

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来源期刊
BMC Biology
BMC Biology 生物-生物学
CiteScore
7.80
自引率
1.90%
发文量
260
审稿时长
3 months
期刊介绍: BMC Biology is a broad scope journal covering all areas of biology. Our content includes research articles, new methods and tools. BMC Biology also publishes reviews, Q&A, and commentaries.
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