Department of Bioengineering, Nagaoka University of Technology, 1603-1 Kamitomioka, Nagaoka, Niigata 940-2188, Japan.
Biochem Biophys Res Commun. 2012 May 4;421(2):232-8. doi: 10.1016/j.bbrc.2012.03.142. Epub 2012 Apr 4.
The ENH (PDLIM5) protein acts as a scaffold to tether various functional proteins at subcellular sites via PDZ and three LIM domains. Splicing of the ENH primary transcript generates various products with different repertories of protein interaction modules. Three LIM-containing ENH predominates in neonatal cardiac tissue, whereas LIM-less ENHs are abundant in adult hearts, as well as skeletal muscles. Here we examine the timing of splicing transitions of ENH gene products during postnatal heart development and C2C12 myoblast differentiation. Real-time PCR analysis shows that LIM-containing ENH1 mRNA is gradually decreased during postnatal heart development, whereas transcripts with the short exon 5 appear in the late postnatal period and continues to increase until at least one month after birth. The splicing transition from LIM-containing ENH1 to LIM-less ENHs is also observed during the early period of C2C12 differentiation. This transition correlates with the emergence of ENH transcripts with the short exon 5, as well as the expression of myogenin mRNA. In contrast, the shift from the short exon 5 to the exon 7 occurs in the late differentiation period. The timing of this late event corresponds to the appearance of mRNA for the skeletal myosin heavy chain MYH4. Thus, coordinated and stepwise splicing transitions result in the production of specific ENH transcripts in mature striated muscles.
ENH(PDLIM5)蛋白作为支架,通过 PDZ 和三个 LIM 结构域将各种功能蛋白固定在亚细胞部位。ENH 初级转录本的剪接产生具有不同蛋白相互作用模块库的各种产物。三个含有 LIM 的 ENH 在新生儿心脏组织中占优势,而无 LIM 的 ENH 在成年心脏和骨骼肌中丰富。在这里,我们研究了 ENH 基因产物在出生后心脏发育和 C2C12 成肌细胞分化过程中的剪接转换时间。实时 PCR 分析表明,含有 LIM 的 ENH1 mRNA 在出生后心脏发育过程中逐渐减少,而具有短外显子 5 的转录本出现在出生后晚期,并持续增加,直到出生后至少一个月。在 C2C12 分化的早期也观察到从含有 LIM 的 ENH1 到无 LIM 的 ENHs 的剪接转换。这种转换与具有短外显子 5 的 ENH 转录本的出现以及肌生成素 mRNA 的表达相关。相比之下,从短外显子 5 到外显子 7 的转变发生在分化后期。这个晚期事件的时间与骨骼肌肌球蛋白重链 MYH4 的 mRNA 出现相对应。因此,协调的逐步剪接转换导致成熟横纹肌中产生特定的 ENH 转录本。