Depts of Physiology and Molecular and Cellular Biology, University of Arizona, Tucson, AZ 85724, USA.
J Struct Biol. 2010 May;170(2):325-33. doi: 10.1016/j.jsb.2010.02.014. Epub 2010 Feb 20.
We studied differential splicing of nebulin, a giant filamentous F-actin binding protein (M(r) approximately 700-800kDa) that is found in skeletal muscle. Nebulin spans the thin filament length, its C-terminus is anchored in the Z-disc, and its N-terminal region is located toward the thin filament pointed end. Various lines of evidence indicate that nebulin plays important roles in thin filament and Z-disc structure in skeletal muscle. In the present work we studied nebulin in a range of muscle types during postnatal development and performed transcript studies with a mouse nebulin exon microarray, developed by us, whose results were confirmed by RT-PCR. We also performed protein studies with high-resolution SDS-agarose gels and Western blots, and structural studies with electron microscopy. We found during postnatal development of the soleus muscle major changes in splicing in both the super-repeat region and the Z-disc region of nebulin; interestingly, these changes were absent in other muscle types. Three novel Z-disc exons, previously described in the mouse gene, were upregulated during postnatal development of soleus muscle and this was correlated with a significant increase in Z-disc width. These findings support the view that nebulin plays an important role in Z-disc width regulation. In summary, we discovered changes in both the super-repeat region and the Z-disc region of nebulin, that these changes are muscle-type specific, and that they correlate with differences in sarcomere structure.
我们研究了nebulin 的差异剪接,nebulin 是一种巨大的丝状 F-肌动蛋白结合蛋白(Mr 约 700-800kDa),存在于骨骼肌中。nebulin 跨越细肌丝长度,其 C 端锚定于 Z 盘,其 N 端区域位于细肌丝的尖端。各种证据表明,nebulin 在骨骼肌的细肌丝和 Z 盘结构中发挥重要作用。在本工作中,我们在出生后发育的一系列肌肉类型中研究了 nebulin,并使用我们开发的小鼠 nebulin 外显子微阵列进行了转录研究,结果通过 RT-PCR 得到证实。我们还使用高分辨率 SDS-琼脂糖凝胶和 Western blot 进行了蛋白质研究,并使用电子显微镜进行了结构研究。我们发现,在比目鱼肌的出生后发育过程中,nebulin 的拼接在超级重复区和 Z 盘区都发生了重大变化;有趣的是,这些变化在其他肌肉类型中不存在。三个以前在小鼠基因中描述过的新的 Z 盘外显子在比目鱼肌的出生后发育过程中上调,这与 Z 盘宽度的显著增加相关。这些发现支持了 nebulin 在 Z 盘宽度调节中发挥重要作用的观点。总之,我们发现了 nebulin 在超级重复区和 Z 盘区的变化,这些变化是肌肉类型特异性的,并且与肌节结构的差异相关。