Department of Developmental Biology, Sloan-Kettering Institute, New York, New York 10065, USA.
Genome Res. 2012 Sep;22(9):1634-45. doi: 10.1101/gr.133553.111.
Atypical miRNA substrates do not fit criteria often used to annotate canonical miRNAs, and can escape the notice of miRNA genefinders. Recent analyses expanded the catalogs of invertebrate splicing-derived miRNAs ("mirtrons"), but only a few tens of mammalian mirtrons have been recognized to date. We performed meta-analysis of 737 mouse and human small RNA data sets comprising 2.83 billion raw reads. Using strict and conservative criteria, we provide confident annotation for 237 mouse and 240 human splicing-derived miRNAs, the vast majority of which are novel genes. These comprise three classes of splicing-derived miRNAs in mammals: conventional mirtrons, 5'-tailed mirtrons, and 3'-tailed mirtrons. In addition, we segregated several hundred additional human and mouse loci with candidate (and often compelling) evidence. Most of these loci arose relatively recently in their respective lineages. Nevertheless, some members in each of the three mirtron classes are conserved, indicating their incorporation into beneficial regulatory networks. We also provide the first Northern validation for mammalian mirtrons, and demonstrate Dicer-dependent association of mature miRNAs from all three classes of mirtrons with Ago2. The recognition of hundreds of mammalian mirtrons provides a new foundation for understanding the scope and evolutionary dynamics of Dicer substrates in mammals.
非典型 miRNA 底物不符合通常用于注释典型 miRNA 的标准,并且可能会被 miRNA 基因探测器忽略。最近的分析扩展了无脊椎动物剪接衍生 miRNA(“mirtrons”)的目录,但迄今为止只识别出了少数几十种哺乳动物 mirtrons。我们对包含 28.3 亿个原始读数的 737 个小鼠和人类小 RNA 数据集进行了荟萃分析。使用严格和保守的标准,我们为 237 个小鼠和 240 个人类剪接衍生 miRNA 提供了可靠的注释,其中绝大多数是新基因。这些 miRNA 包括哺乳动物中三种剪接衍生 miRNA 类别:常规 mirtrons、5′尾 mirtrons 和 3′尾 mirtrons。此外,我们还对具有候选(通常是令人信服的)证据的数百个人类和小鼠基因座进行了分类。这些基因座中的大多数在其各自的谱系中相对较新产生。然而,这三种 mirtron 类别中的每个类别都有一些成员是保守的,这表明它们被纳入了有益的调控网络。我们还提供了哺乳动物 mirtrons 的首次 Northern 验证,并证明了所有三种 mirtron 类别的成熟 miRNA 都与 Ago2 具有 Dicer 依赖性关联。数百种哺乳动物 mirtrons 的识别为理解哺乳动物中 Dicer 底物的范围和进化动态提供了新的基础。