National Center for Biotechnology Information, National Library of Medicine, National Institutes of Health, Bethesda, MD 20894, USA.
Biol Direct. 2010 Mar 19;5:13. doi: 10.1186/1745-6150-5-13.
The mechanism by which the arthropod Oskar and vertebrate TDRD5/TDRD7 proteins nucleate or organize structurally related ribonucleoprotein (RNP) complexes, the polar granule and nuage, is poorly understood. Using sequence profile searches we identify a novel domain in these proteins that is widely conserved across eukaryotes and bacteria.
Using contextual information from domain architectures, sequence-structure superpositions and available functional information we predict that this domain is likely to adopt the winged helix-turn-helix fold and bind RNA with a potential specificity for dsRNA. We show that in eukaryotes this domain is often combined in the same polypeptide with protein-protein- or lipid- interaction domains that might play a role in anchoring these proteins to specific cytoskeletal structures.
Thus, proteins with this domain might have a key role in the recognition and localization of dsRNA, including miRNAs, rasiRNAs and piRNAs hybridized to their targets. In other cases, this domain is fused to ubiquitin-binding, E3 ligase and ubiquitin-like domains indicating a previously under-appreciated role for ubiquitination in regulating the assembly and stability of nuage-like RNP complexes. Both bacteria and eukaryotes encode a conserved family of proteins that combines this predicted RNA-binding domain with a previously uncharacterized domain (DUF88). We present evidence that it is an RNAse belonging to the superfamily that includes the 5'->3' nucleases, PIN and NYN domains and might be recruited to degrade certain RNAs.
节肢动物 Oskar 和脊椎动物 TDRD5/TDRD7 蛋白作为核蛋白或组织结构相关核糖核蛋白 (RNP) 复合物——极粒体和核质的机制尚未完全了解。我们通过序列轮廓搜索,在这些蛋白中鉴定出一个新的结构域,该结构域在真核生物和细菌中广泛保守。
利用结构域架构、序列-结构叠加和现有功能信息的上下文信息,我们预测该结构域可能采用翼状螺旋-转角-螺旋折叠,并结合 RNA 具有双链 RNA (dsRNA) 的潜在特异性。我们表明,在真核生物中,该结构域通常与蛋白-蛋白或脂质相互作用结构域结合在同一多肽中,可能在将这些蛋白锚定到特定的细胞骨架结构中发挥作用。
因此,具有该结构域的蛋白可能在识别和定位 dsRNA 方面发挥关键作用,包括与靶标杂交的 miRNA、rasiRNA 和 piRNA。在其他情况下,该结构域融合到泛素结合、E3 连接酶和泛素样结构域,表明泛素化在调节核质样 RNP 复合物的组装和稳定性方面具有以前未被重视的作用。细菌和真核生物都编码一个保守的蛋白家族,该家族将该预测的 RNA 结合结构域与以前未被表征的结构域 (DUF88) 结合。我们提供的证据表明,它是一种属于包括 5'->3'核酸酶、PIN 和 NYN 结构域的超家族的核糖核酸酶,可能被招募来降解某些 RNA。