*School of Biology, University of St Andrews, BSRC Complex, North Haugh, St Andrews KY16 9ST, U.K.
†College of Life Sciences, University of Dundee, Dundee DD1 5EH, U.K.
Biochem J. 2014 Mar 1;458(2):267-80. doi: 10.1042/BJ20130870.
DM1 (myotonic dystrophy type 1) is caused by elongation of a CTG repeat in the DMPK (dystrophia myotonica-protein kinase) gene. mRNA transcripts containing these CUGexp (CUG expansion) repeats form accumulations, or foci, in the nucleus of the cell. The pathogenesis of DM1 is proposed to result from inappropriate patterns of alternative splicing caused by sequestration of the developmentally regulated alternative splicing factor MBNL1 (muscleblind-like 1) by these foci. Since eye lens cataract is a common feature of DM1 we have examined the distribution and dynamics of MBNL1 in lens epithelial cell lines derived from patients with DM1. The results of the present study demonstrate that only a small proportion of nuclear MBNL1 accumulates in CUGexp pre-mRNA foci. MBNL1 is, however, highly mobile and changes localization in response to altered transcription and splicing activity. Moreover, immunolocalization studies in lens sections suggest that a change in MBNL1 distribution is important during lens growth and differentiation. Although these data suggest that the loss of MBNL1 function due to accumulation in foci is an unlikely explanation for DM1 symptoms in the lens, they do demonstrate a strong relationship between the subcellular MBNL1 localization and pathways of cellular differentiation, providing an insight into the sensitivity of the lens to changes in MBNL1 distribution.
DM1(肌强直性营养不良症 1 型)是由 DMPK(肌强直性营养不良蛋白激酶)基因中的 CTG 重复序列延长引起的。含有这些 CUGexp(CUG 扩展)重复序列的 mRNA 转录本在细胞的核内形成聚集或焦点。DM1 的发病机制被认为是由于这些焦点隔离了发育调节的剪接因子 MBNL1(肌肉盲样蛋白 1),导致了不合适的选择性剪接模式。由于白内障是 DM1 的常见特征,我们检查了来自 DM1 患者的 lens 上皮细胞系中 MBNL1 的分布和动态。本研究的结果表明,只有一小部分核 MBNL1 聚集在 CUGexp 前 mRNA 焦点中。然而,MBNL1 具有高度的流动性,并根据转录和剪接活性的改变而改变定位。此外,lens 切片的免疫定位研究表明,MBNL1 分布的改变在 lens 生长和分化过程中很重要。尽管这些数据表明,由于焦点的积累而导致 MBNL1 功能丧失不太可能是 lens 中 DM1 症状的解释,但它们确实证明了细胞分化途径中细胞内 MBNL1 定位之间的强烈关系,为 lens 对 MBNL1 分布变化的敏感性提供了深入了解。