首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Muscle-specific RING finger-1 interacts with titin to regulate sarcomeric M-line and thick filament structure and may have nuclear functions via its interaction with glucocorticoid modulatory element binding protein-1
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Muscle-specific RING finger-1 interacts with titin to regulate sarcomeric M-line and thick filament structure and may have nuclear functions via its interaction with glucocorticoid modulatory element binding protein-1

机译:肌肉特异性RING手指1与肌动蛋白相互作用调节肌节M线和粗丝结构并可能通过与糖皮质激素调节因子结合蛋白1相互作用而具有核功能。

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摘要

The COOH-terminal A168–170 region of the giant sarcomeric protein titin interacts with muscle-specific RING finger-1 (MURF-1). To investigate the functional significance of this interaction, we expressed green fluorescent protein fusion constructs encoding defined fragments of titin's M-line region and MURF-1 in cardiac myocytes. Upon expression of MURF-1 or its central region (containing its titin-binding site), the integrity of titin's M-line region was dramatically disrupted. Disruption of titin's M-line region also resulted in a perturbation of thick filament components, but, surprisingly, not of the NH2-terminal or I-band regions of titin, the Z-lines, or the thin filaments. This specific phenotype also was caused by the expression of titin A168–170. These data suggest that the interaction of titin with MURF-1 is important for the stability of the sarcomeric M-line region.MURF-1 also binds to ubiquitin-conjugating enzyme-9 and isopeptidase T-3, enzymes involved in small ubiquitin-related modifier–mediated nuclear import, and with glucocorticoid modulatory element binding protein-1 (GMEB-1), a transcriptional regulator. Consistent with our in vitro binding data implicating MURF-1 with nuclear functions, endogenous MURF-1 also was detected in the nuclei of some myocytes. The dual interactions of MURF-1 with titin and GMEB-1 may link myofibril signaling pathways (perhaps including titin's kinase domain) with muscle gene expression.
机译:巨大的肌节蛋白titin的COOH末端A168-170区与肌肉特异性的RING Finger-1(MURF-1)相互作用。为了研究这种相互作用的功能意义,我们表达了绿色荧光蛋白融合构建体,该构建体编码了心肌细胞中titin's M线区域和MURF-1的确定片段。表达MURF-1或其中心区域(包含其纤溶蛋白结合位点)后,纤溶蛋白M线区域的完整性被大大破坏。 titin的M线区域的破坏也导致了粗丝成分的扰动,但令人惊讶的是,titin,Z线或细丝的NH2末端或I带区域没有受到干扰。这种特定的表型也是由titin A168–170的表达引起的。这些数据表明,titin与MURF-1的相互作用对于肌节M线区的稳定性很重要.MURF-1还与泛素结合酶9和异肽酶T-3结合,这些酶参与了与泛素相关的小分子调节剂介导的核输入,并带有糖皮质激素调节元件结合蛋白-1(GMEB-1),一种转录调节剂。与涉及具有核功能的MURF-1的体外结合数据一致,在某些肌细胞的核中也检测到内源性MURF-1。 MURF-1与titin和GMEB-1的双重相互作用可能将肌原纤维信号通路(可能包括titin's激酶结构域)与肌肉基因表达联系起来。

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