Piccirillo Christopher, Khanna Richie, Kiledjian Megerditch
Rutgers University, Department of Cell Biology and Neuroscience, Piscataway, New Jersey 08854,USA.
RNA. 2003 Sep;9(9):1138-47. doi: 10.1261/rna.5690503.
Regulation of decapping is a critical determinant of mRNA stability. We recently identified hDcp2 as a human decapping enzyme with intrinsic decapping activity. This activity is specific to N(7)-methylated guanosine containing RNA. The hDcp2 enzyme does not function on the cap structure alone and is not sensitive to competition by cap analog, suggesting that hDcp2 requires the RNA for cap recognition. We now demonstrate that hDcp2 is an RNA-binding protein and its recognition and hydrolysis of the cap substrate is dependent on an initial interaction with the RNA moiety. A biochemical characterization of hDcp2 revealed that a 163 amino acid region containing two evolutionarily conserved regions, the Nudix fold hydrolase domain and the adjacent Box B region contained methyl-cap-specific hydrolysis activity. Maximum decapping activity for wild-type as well as truncation mutants of hDcp2 required Mn(2+) as a divalent cation. The demonstration that hDcp2 is an RNA-binding protein with an RNA-dependent decapping activity will now provide new approaches to identify specific mRNAs that are regulated by this decapping enzyme as well as provide novel avenues to control mRNA decapping and turnover by influencing the RNA-binding property of hDcp2.
去帽调控是mRNA稳定性的关键决定因素。我们最近鉴定出hDcp2是一种具有内在去帽活性的人去帽酶。这种活性对含N(7)-甲基化鸟苷的RNA具有特异性。hDcp2酶并非仅作用于帽结构,且对帽类似物的竞争不敏感,这表明hDcp2需要RNA来识别帽。我们现在证明hDcp2是一种RNA结合蛋白,其对帽底物的识别和水解依赖于与RNA部分的初始相互作用。hDcp2的生化特性表明,一个包含两个进化保守区域(Nudix折叠水解酶结构域和相邻的Box B区域)的163个氨基酸区域具有甲基帽特异性水解活性。hDcp2野生型以及截短突变体的最大去帽活性需要Mn(2+)作为二价阳离子。hDcp2是一种具有RNA依赖性去帽活性的RNA结合蛋白这一证明,将为鉴定受该去帽酶调控的特定mRNA提供新方法,也将为通过影响hDcp2的RNA结合特性来控制mRNA去帽和周转提供新途径。