Department of Neuroscience, BMC, Uppsala University, Box 593, Biomedical Center, 75124, Uppsala, Sweden.
J Mol Neurosci. 2013 Oct;51(2):615-28. doi: 10.1007/s12031-013-0034-4. Epub 2013 Jun 4.
The proliferation, cell cycle exit and differentiation of progenitor cells are controlled by several different factors. The chromodomain protein mortality factor 4-like 1 (Morf4l1) has been ascribed a role in both proliferation and differentiation. Little attention has been given to the existence of alternative splice variants of the Morf4l1 mRNA, which encode two Morf41l isoforms: a short isoform (S-Morf4l1) with an intact chromodomain and a long isoform (L-Morf4l1) with an insertion in or in the vicinity of the chromodomain. The aim of this study was to investigate if this alternative splicing has a function during development. We analysed the temporal and spatial distribution of the two mRNAs and over-expressed both isoforms in the developing retina. The results showed that the S-Morf4l1 mRNA is developmentally regulated. Over-expression of S-Morf4l1 using a retrovirus vector produced a clear phenotype with an increase of early-born neurons: retinal ganglion cells, horizontal cells and cone photoreceptor cells. Over-expression of L-Morf4l1 did not produce any distinguishable phenotype. The over-expression of S-Morf4l1 but not L-Morf4l1 also increased apoptosis in the infected regions. Our results suggest that the two Morf4l1 isoforms have different functions during retinogenesis and that Morf4l1 functions are fine-tuned by developmentally regulated alternative splicing. The data also suggest that Morf4l1 contributes to the regulation of cell genesis in the retina.
祖细胞的增殖、细胞周期退出和分化受多种不同因素的控制。色氨酸-门冬氨酸重复域蛋白 4 样 1(Morf4l1)已被认为在增殖和分化中都具有作用。然而,人们对 Morf4l1 mRNA 的选择性剪接变体的存在关注甚少,这些变体编码两种 Morf41l 异构体:具有完整色氨酸-门冬氨酸重复域的短异构体(S-Morf4l1)和在色氨酸-门冬氨酸重复域内或附近插入的长异构体(L-Morf4l1)。本研究旨在探讨这种选择性剪接在发育过程中的功能。我们分析了两种 mRNA 的时空分布,并在发育中的视网膜中过表达了这两种异构体。结果表明,S-Morf4l1 mRNA 是发育调节的。使用逆转录病毒载体过表达 S-Morf4l1 会产生明显的表型,表现为早期出生的神经元(视网膜神经节细胞、水平细胞和锥状光感受器细胞)增加。过表达 L-Morf4l1 不会产生任何可识别的表型。过表达 S-Morf4l1 但不是 L-Morf4l1 也会增加感染区域的细胞凋亡。我们的结果表明,两种 Morf4l1 异构体在视网膜发生过程中具有不同的功能,并且 Morf4l1 功能通过发育调节的选择性剪接进行微调。数据还表明,Morf4l1 有助于视网膜中细胞发生的调节。