首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Distinct roles for telethonin N-versus C-terminus in sarcomere assembly and maintenance.
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Distinct roles for telethonin N-versus C-terminus in sarcomere assembly and maintenance.

机译:在萨拉梅组装和维修中的Telethonin N - 与C-Terminus不同的角色。

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摘要

The N-terminus of telethonin forms a unique structure linking two titin N-termini at the Z-disc. While a specific role for the C-terminus has not been established, several studies indicate it may have a regulatory function. Using a morpholino approach in Xenopus, we show that telethonin knockdown leads to embryonic paralysis, myocyte defects, and sarcomeric disruption. These myopathic defects can be rescued by expressing full-length telethonin mRNA in morpholino background, indicating that telethonin is required for myofibrillogenesis. However, a construct missing C-terminal residues is incapable of rescuing motility or sarcomere assembly in cultured myocytes. We, therefore, tested two additional constructs: one where four C-terminal phosphorylatable residues were mutated to alanines and another where terminal residues were randomly replaced. Data from these experiments support that the telethonin C-terminus is required for assembly, but in a context-dependent manner, indicating that factors and forces present in vivo can compensate for C-terminal truncation or mutation.
机译:Telethonin的N-末端形成连接两曲N-末端在Z盘上的独特结构。虽然尚未建立C-Terminus的特定作用,但有几项研究表明它可能具有监管功能。在Xenopus中使用吗啉代方法,我们表明Telethonin敲低导致胚胎瘫痪,肌细胞缺陷和肉瘤破碎。这些近视疗法可以通过在吗啉背景中表达全长的甲素mRNA来拯救,表明Myofibrillogis需要Telethonin。然而,缺少C末端残留物的构建体不能在培养的肌细胞中拯救动力或萨马雷组合。因此,我们测试了另外两种构建体:四个C末端可磷酸化残基突变到丙氨酸的情况下,并且将终端残留物随机替换。来自这些实验的数据支持,组装需要依赖于上下文的方式,表明体内存在的因素和力可以补偿C末端截短或突变。

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