Department of Ribonucleoprotein Biochemistry, Institute of Bioorganic Chemistry Polish Academy of Sciences, 61-704 Poznan, Poland.
Int J Mol Sci. 2021 Aug 13;22(16):8690. doi: 10.3390/ijms22168690.
Dicers are multidomain proteins, usually comprising an amino-terminal putative helicase domain, a DUF283 domain (domain of unknown function), a PAZ domain, two RNase III domains (RNase IIIa and RNase IIIb) and a dsRNA-binding domain. Dicer homologs play an important role in the biogenesis of small regulatory RNAs by cleaving single-stranded precursors adopting stem-loop structures (pre-miRNAs) and double-strand RNAs into short RNA duplexes containing functional microRNAs or small interfering RNAs, respectively. Growing evidence shows that apart from the canonical role, Dicer proteins can serve a number of other functions. For example, results of our previous studies showed that human Dicer (hDicer), presumably through its DUF283 domain, can facilitate hybridization between two complementary RNAs, thus, acting as a nucleic acid annealer. Here, to test this assumption, we prepared a hDicer deletion variant lacking the amino acid residues 625-752 corresponding to the DUF283 domain. The respective 128-amino acid fragment of hDicer was earlier demonstrated to accelerate base-pairing between two complementary RNAs in vitro. We show that the ΔDUF(625-752) hDicer variant loses the potential to facilitate RNA-RNA base pairing, which strongly proves our hypothesis about the importance of the DUF283 domain for the RNA-RNA annealing activity of hDicer. Interestingly, the in vitro biochemical characterization of the obtained deletion variant reveals that it displays different RNA cleavage properties depending on the pre-miRNA substrate.
Dicer 是一种多功能蛋白,通常包含一个氨基端假定的解旋酶结构域、一个 DUF283 结构域(未知功能结构域)、一个 PAZ 结构域、两个 RNase III 结构域(RNase IIIa 和 RNase IIIb)和一个双链 RNA 结合结构域。Dicer 同源物通过切割采用茎环结构(pre-miRNA)的单链前体和双链 RNA 成分别包含功能性 microRNA 或小干扰 RNA 的短 RNA 双链体,在小调控 RNA 的生物发生中发挥重要作用。越来越多的证据表明,除了经典作用外,Dicer 蛋白还可以发挥许多其他功能。例如,我们之前的研究结果表明,人 Dicer(hDicer),大概通过其 DUF283 结构域,可以促进两个互补 RNA 之间的杂交,从而充当核酸退火酶。在这里,为了验证这一假设,我们制备了一个缺乏对应于 DUF283 结构域的 625-752 个氨基酸残基的 hDicer 缺失变体。hDicer 的相应 128 个氨基酸片段先前已被证明可以在体外加速两个互补 RNA 之间的碱基配对。我们表明,ΔDUF(625-752)hDicer 变体失去了促进 RNA-RNA 碱基配对的潜力,这有力地证明了我们关于 DUF283 结构域对于 hDicer 的 RNA-RNA 退火活性的重要性的假设。有趣的是,获得的缺失变体的体外生化特性表明,它根据 pre-miRNA 底物显示出不同的 RNA 切割特性。