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O-连接的N-乙酰葡糖胺化是与蛋白质-蛋白质相互作用调节相关的骨骼肌肌节形态测量的关键调节因子。

O-GlcNAcylation is a key modulator of skeletal muscle sarcomeric morphometry associated to modulation of protein-protein interactions.

作者信息

Lambert Matthias, Richard Elodie, Duban-Deweer Sophie, Krzewinski Frederic, Deracinois Barbara, Dupont Erwan, Bastide Bruno, Cieniewski-Bernard Caroline

机构信息

Univ.Lille, EA7369-URePSSS, Unité de Recherche Pluridisciplinaire Sport, Santé, Société, Equipe « Activité Physique, Muscle, Santé », F-59000 Lille, France.

BiCeL (BioImaging Center of Lille - Campus Lille 1), Univ.Lille, FR3688 CNRS FRABio, F-59000 Lille, France.

出版信息

Biochim Biophys Acta. 2016 Sep;1860(9):2017-30. doi: 10.1016/j.bbagen.2016.06.011. Epub 2016 Jun 11.

Abstract

BACKGROUND

The sarcomere structure of skeletal muscle is determined through multiple protein-protein interactions within an intricate sarcomeric cytoskeleton network. The molecular mechanisms involved in the regulation of this sarcomeric organization, essential to muscle function, remain unclear. O-GlcNAcylation, a post-translational modification modifying several key structural proteins and previously described as a modulator of the contractile activity, was never considered to date in the sarcomeric organization.

METHODS

C2C12 skeletal myotubes were treated with Thiamet-G (OGA inhibitor) in order to increase the global O-GlcNAcylation level.

RESULTS

Our data clearly showed a modulation of the O-GlcNAc level more sensitive and dynamic in the myofilament-enriched fraction than total proteome. This fine O-GlcNAc level modulation was closely related to changes of the sarcomeric morphometry. Indeed, the dark-band and M-line widths increased, while the I-band width and the sarcomere length decreased according to the myofilament O-GlcNAc level. Some structural proteins of the sarcomere such as desmin, αB-crystallin, α-actinin, moesin and filamin-C have been identified within modulated protein complexes through O-GlcNAc level variations. Their interactions seemed to be changed, especially for desmin and αB-crystallin.

CONCLUSIONS

For the first time, our findings clearly demonstrate that O-GlcNAcylation, through dynamic regulations of the structural interactome, could be an important modulator of the sarcomeric structure and may provide new insights in the understanding of molecular mechanisms of neuromuscular diseases characterized by a disorganization of the sarcomeric structure.

GENERAL SIGNIFICANCE

In the present study, we demonstrated a role of O-GlcNAcylation in the sarcomeric structure modulation.

摘要

背景

骨骼肌的肌节结构是通过复杂的肌节细胞骨架网络内的多种蛋白质 - 蛋白质相互作用来确定的。参与调节这种对肌肉功能至关重要的肌节组织的分子机制仍不清楚。O - 连接的N - 乙酰葡糖胺化(O - GlcNAcylation)是一种翻译后修饰,可修饰多种关键结构蛋白,此前被描述为收缩活性的调节剂,但迄今为止在肌节组织中从未被考虑过。

方法

用硫胺素 - G(OGA抑制剂)处理C2C12骨骼肌肌管,以提高整体O - GlcNAcylation水平。

结果

我们的数据清楚地表明,与总蛋白质组相比,富含肌丝的部分中O - GlcNAc水平的调节更敏感且更具动态性。这种精细的O - GlcNAc水平调节与肌节形态测量的变化密切相关。实际上,根据肌丝O - GlcNAc水平,暗带和M线宽度增加,而I带宽度和肌节长度减小。通过O - GlcNAc水平变化,已在调节的蛋白质复合物中鉴定出肌节的一些结构蛋白,如结蛋白、αB - 晶状体蛋白、α - 辅肌动蛋白、埃兹蛋白和细丝蛋白 - C。它们的相互作用似乎发生了变化,尤其是结蛋白和αB - 晶状体蛋白。

结论

我们的研究结果首次清楚地表明,O - GlcNAcylation通过对结构相互作用组的动态调节,可能是肌节结构的重要调节剂,并可能为理解以肌节结构紊乱为特征的神经肌肉疾病的分子机制提供新的见解。

一般意义

在本研究中,我们证明了O - GlcNAcylation在肌节结构调节中的作用。

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