Eppley Institute for Research in Cancer and Allied Diseases, University of Nebraska Medical Center, Omaha, Nebraska, United States of America.
PLoS One. 2012;7(4):e34827. doi: 10.1371/journal.pone.0034827. Epub 2012 Apr 4.
Recent studies have shown that the RNA binding protein Musashi 2 (Msi2) plays important roles during development. Msi2 has also been shown to be elevated in several leukemias and its elevated expression has been linked with poorer prognosis in these cancers. Additionally, in embryonic stem cells (ESC) undergoing the early stages of differentiation, Msi2 has been shown to associate with the transcription factor Sox2, which is required for the self-renewal of ESC. These findings led us to examine the effects of Msi2 on the behavior of ESC. We determined that ESC express two isoforms of Msi2, the larger canonical isoform (isoform 1) and a shorter, splice-variant isoform (isoform 2). Using multiple shRNA lentiviral vectors, we determined that knockdown of Msi2 disrupts the self-renewal of ESC and promotes their differentiation into cells that express markers associated with mesoderm, ectoderm, and trophectoderm. Moreover, our studies indicate that the extent of differentiation and the loss of self-renewal capacity correlate with the levels to which Msi2 levels were decreased. We extended these findings by engineering ESC to inducibly express either Msi2 isoform1 or isoform 2. We determined that ectopic expression of Msi2 isoform 1, but not isoform 2, enhances the cloning efficiency of ESC. In addition, we examined how Msi2 isoform 1 and isoform 2 affect the differentiation of ESC. Interestingly, ectopic expression of either Msi2 isoform 1 or isoform 2 does not affect the pattern of differentiation induced by retinoic acid. Finally, we show that ectopic expression of either isoform 1 or isoform 2 is not sufficient to block the differentiation that results from the knockdown of both isoforms of Msi2. Thus, it appears that both isoforms of Msi2 are required for the self-renewal of ESC.
最近的研究表明,RNA 结合蛋白 Musashi 2(Msi2)在发育过程中发挥着重要作用。研究还表明,Msi2 在几种白血病中升高,其高表达与这些癌症的预后较差有关。此外,在经历早期分化的胚胎干细胞(ESC)中,Msi2 已被证明与转录因子 Sox2 相关联,Sox2 是 ESC 自我更新所必需的。这些发现促使我们研究 Msi2 对 ESC 行为的影响。我们确定 ESC 表达两种 Msi2 同工型,较大的经典同工型(同工型 1)和较短的剪接变异同工型(同工型 2)。使用多种 shRNA 慢病毒载体,我们确定 Msi2 的敲低会破坏 ESC 的自我更新,并促进其分化为表达与中胚层、外胚层和滋养外胚层相关标志物的细胞。此外,我们的研究表明,分化程度和自我更新能力的丧失与 Msi2 水平降低的程度相关。我们通过工程化 ESC 使其可诱导表达 Msi2 同工型 1 或同工型 2,扩展了这些发现。我们确定 Msi2 同工型 1 的异位表达,但不是同工型 2,可提高 ESC 的克隆效率。此外,我们研究了 Msi2 同工型 1 和同工型 2 如何影响 ESC 的分化。有趣的是,异位表达 Msi2 同工型 1 或同工型 2 不会影响维甲酸诱导的分化模式。最后,我们表明,异位表达同工型 1 或同工型 2 不足以阻止 Msi2 两种同工型敲低所导致的分化。因此,似乎两种 Msi2 同工型都需要 ESC 的自我更新。