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Argonaute 蛋白在哺乳动物发育中的定量功能。

Quantitative functions of Argonaute proteins in mammalian development.

机构信息

Department of Molecular, Cellular, and Developmental Biology, University of Colorado, Boulder, Colorado 80309, USA.

出版信息

Genes Dev. 2012 Apr 1;26(7):693-704. doi: 10.1101/gad.182758.111.

Abstract

Argonaute proteins (Ago1-4) are essential components of the microRNA-induced silencing complex and play important roles in both microRNA biogenesis and function. Although Ago2 is the only one with the slicer activity, it is not clear whether the slicer activity is a universally critical determinant for Ago2's function in mammals. Furthermore, functional specificities associated with different Argonautes remain elusive. Here we report that microRNAs are randomly sorted to individual Argonautes in mammals, independent of the slicer activity. When both Ago1 and Ago2, but not either Ago1 or Ago2 alone, are ablated in the skin, the global expression of microRNAs is significantly compromised and it causes severe defects in skin morphogenesis. Surprisingly, Ago3 is able to load microRNAs efficiently in the absence of Ago1 and Ago2, despite a significant loss of global microRNA expression. Quantitative analyses reveal that Ago2 interacts with a majority of microRNAs (60%) in the skin, compared with Ago1 (30%) and Ago3 (<10%). This distribution is highly correlated with the abundance of each Argonaute, as quantified by shotgun proteomics. The quantitative correlation between Argonautes and their associated microRNAs is conserved in human cells. Finally, we measure the absolute expression of Argonaute proteins and determine that their copy number is ~1.4 × 10(5) to 1.7 × 10(5) molecules per cell. Together, our results reveal a quantitative picture for microRNA activity in mammals.

摘要

Argonaute 蛋白(Ago1-4)是 microRNA 诱导沉默复合物的必需组成部分,在 microRNA 的生物发生和功能中发挥重要作用。尽管 Ago2 是唯一具有切割酶活性的,但不清楚切割酶活性是否是 Ago2 在哺乳动物中功能的普遍关键决定因素。此外,与不同 Argonautes 相关的功能特异性仍然难以捉摸。在这里,我们报告说 microRNAs 在哺乳动物中随机分配到各个 Argonautes 中,与切割酶活性无关。当皮肤中同时缺失 Ago1 和 Ago2,但不是单独缺失 Ago1 或 Ago2 时,microRNAs 的全局表达显著受损,并导致皮肤形态发生严重缺陷。令人惊讶的是,尽管全球 microRNA 表达明显丧失,Ago3 仍能够有效地加载 microRNAs。定量分析显示,Ago2 与皮肤中的大多数 microRNAs(60%)相互作用,而 Ago1(30%)和 Ago3(<10%)相互作用较少。这种分布与每个 Argonaute 的丰度高度相关,如通过 shotgun 蛋白质组学定量。Argonautes 与其相关 microRNAs 之间的定量相关性在人类细胞中是保守的。最后,我们测量 Argonaute 蛋白的绝对表达,并确定它们的拷贝数为每个细胞约 1.4×10(5)到 1.7×10(5)分子。总之,我们的结果揭示了哺乳动物中 microRNA 活性的定量图景。

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