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人类AGO2的MC区域不包含类真核起始因子4E(eIF4E)的mRNA帽结合基序。

The human Ago2 MC region does not contain an eIF4E-like mRNA cap binding motif.

作者信息

Kinch Lisa N, Grishin Nick V

机构信息

Howard Hughes Medical Institute and Department of Biochemistry, University of Texas Southwestern Medical Center, 5323 Harry Hines Blvd, Dallas, TX 75390-9050, USA.

出版信息

Biol Direct. 2009 Jan 21;4:2. doi: 10.1186/1745-6150-4-2.

Abstract

BACKGROUND

Argonaute (Ago) proteins interact with small regulatory RNAs to mediate gene regulatory pathways. A recent report by Kiriakidou et al. 1 describes an MC sequence region identified in Ago2 that displays similarity to the cap-binding motif in translation initiation factor 4E (eIF4E). In a cap-bound eIF4E structure, two important aromatic residues of the motif stack on either side of a 7-methylguanosine 5'-triphosphate (m7Gppp) base. The corresponding Ago2 aromatic residues (F450 and F505) were hypothesized to perform the same cap-binding function. However, the detected similarity between the MC sequence and the eIF4E cap-binding motif was questionable.

RESULTS

A number of sequence-based and structure-based bioinformatics methods reveal the reported similarity between the Ago2 MC sequence region and the eIF4E cap-binding motif to be spurious. Alternatively, the MC sequence region is confidently assigned to the N-terminus of the Ago piwi module, within the mid domain of experimentally determined prokaryotic Ago structures. Confident mapping of the Ago2 MC sequence region to the piwi mid domain results in a homology-based structure model that positions the identified aromatic residues over 20 A apart, with one of the aromatic side chains (F450) contributing instead to the hydrophobic core of the domain.

CONCLUSION

Correct functional prediction based on weak sequence similarity requires substantial evolutionary and structural support. The evolutionary context of the Ago mid domain suggested by multiple sequence alignment is limited to a conserved hydrophobicity profile required for the fold and a motif following the MC region that binds guide RNA. Mapping of the MC sequence to the mid domain structure reveals Ago2 aromatics that are incompatible with eIF4E-like mRNA cap-binding, yet display some limited local structure similarities that cause the chance sequence match to eIF4E.

摘要

背景

AGO蛋白与小调节RNA相互作用以介导基因调控途径。Kiriakidou等人最近的一份报告描述了在AGO2中鉴定出的一个MC序列区域,该区域与翻译起始因子4E(eIF4E)中的帽结合基序具有相似性。在帽结合的eIF4E结构中,该基序的两个重要芳香族残基堆积在7-甲基鸟苷5'-三磷酸(m7Gppp)碱基的两侧。推测AGO2相应的芳香族残基(F450和F505)具有相同的帽结合功能。然而,MC序列与eIF4E帽结合基序之间检测到的相似性值得怀疑。

结果

许多基于序列和结构的生物信息学方法表明,所报道的AGO2 MC序列区域与eIF4E帽结合基序之间的相似性是虚假的。另外,MC序列区域被可靠地定位到AGO Piwi结构域的N端,位于实验确定的原核AGO结构的中间结构域内。将AGO2 MC序列区域可靠地映射到Piwi中间结构域,得到了一个基于同源性的结构模型,该模型将鉴定出的芳香族残基定位在20 Å以上的距离,其中一个芳香族侧链(F450)反而构成了该结构域的疏水核心。

结论

基于弱序列相似性进行正确的功能预测需要大量的进化和结构支持。多序列比对显示的AGO中间结构域的进化背景仅限于该结构折叠所需的保守疏水性图谱以及MC区域之后结合引导RNA的基序。将MC序列映射到中间结构域结构上,发现AGO2的芳香族残基与类似eIF4E的mRNA帽结合不兼容,但显示出一些有限的局部结构相似性,这导致了与eIF4E的偶然序列匹配。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d42/2636766/b25cb8d00937/1745-6150-4-2-1.jpg

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