Department of Physiology, University of Arizona, Tucson, Arizona 85724-5217, USA.
J Cell Sci. 2010 Feb 1;123(Pt 3):384-91. doi: 10.1242/jcs.042234. Epub 2010 Jan 5.
A prominent feature of striated muscle is the regular lateral alignment of adjacent sarcomeres. An important intermyofibrillar linking protein is the intermediate filament protein desmin, and based on biochemical and structural studies in primary cultures of myocytes it has been proposed that desmin interacts with the sarcomeric protein nebulin. Here we tested whether nebulin is part of a novel biomechanical linker complex, by using a recently developed nebulin knockout (KO) mouse model and measuring Z-disk displacement in adjacent myofibrils of both extensor digitorum longus (EDL) and soleus muscle. Z-disk displacement increased as sarcomere length (SL) was increased and the increase was significantly larger in KO fibers than in wild-type (WT) fibers; results in 3-day-old and 10-day-old mice were similar. Immunoelectron microscopy revealed reduced levels of desmin in intermyofibrillar spaces adjacent to Z-disks in KO fibers compared with WT fibers. We also performed siRNA knockdown of nebulin and expressed modules within the Z-disk portion of nebulin (M160-M170) in quail myotubes and found that this prevented the mature Z-disk localization of desmin filaments. Combined, these data suggest a model in which desmin attaches to the Z-disk through an interaction with nebulin. Finally, because nebulin has been proposed to play a role in specifying Z-disk width, we also measured Z-disk width in nebulin KO mice. Results show that most Z-disks of KO mice were modestly increased in width (approximately 80 nm in soleus and approximately 40 nm in EDL fibers) whereas a small subset had severely increased widths (up to approximately 1 microm) and resembled nemaline rod bodies. In summary, structural studies on a nebulin KO mouse show that in the absence of nebulin, Z-disks are significantly wider and that myofibrils are misaligned. Thus the functional roles of nebulin extend beyond thin filament length regulation and include roles in maintaining physiological Z-disk widths and myofibrillar connectivity.
横纹肌的一个突出特征是相邻肌节的规则侧向排列。一种重要的肌间连接蛋白是中间丝蛋白结蛋白,基于原代心肌细胞的生化和结构研究,人们提出结蛋白与肌节蛋白nebulin 相互作用。在这里,我们使用最近开发的 nebulin 敲除 (KO) 小鼠模型来测试 nebulin 是否是一种新型生物力学连接复合物的一部分,并测量了伸趾长肌 (EDL) 和比目鱼肌中相邻肌节的 Z 盘位移。随着肌节长度 (SL) 的增加,Z 盘位移增加,KO 纤维中的增加明显大于 WT 纤维;3 天和 10 天龄小鼠的结果相似。免疫电子显微镜显示,与 WT 纤维相比,KO 纤维中相邻 Z 盘的肌间空间中结蛋白水平降低。我们还在鹌鹑肌管中进行了 nebulin 的 siRNA 敲低,并表达了 nebulin 的 Z 盘部分 (M160-M170) 的模块,发现这阻止了结蛋白丝的成熟 Z 盘定位。综合这些数据,我们提出了一个模型,即结蛋白通过与 nebulin 的相互作用附着在 Z 盘上。最后,因为 nebulin 被提出在指定 Z 盘宽度方面发挥作用,所以我们还测量了 nebulin KO 小鼠中的 Z 盘宽度。结果表明,KO 小鼠的大多数 Z 盘宽度适度增加(比目鱼肌纤维中约 80nm,EDL 纤维中约 40nm),而一小部分 Z 盘宽度增加很大(高达约 1μm),类似于 nemaline 杆状体。总之,对 nebulin KO 小鼠的结构研究表明,在没有 nebulin 的情况下,Z 盘明显变宽,肌节排列不齐。因此,nebulin 的功能作用不仅延伸到细肌丝长度调节,还包括维持生理 Z 盘宽度和肌节连接的作用。