首页> 美国卫生研究院文献>Journal of the Boston Society of Medical Sciences >Phosphofructokinase Muscle-Specific Isoform Requires Caveolin-3 Expression for Plasma Membrane Recruitment and Caveolar Targeting
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Phosphofructokinase Muscle-Specific Isoform Requires Caveolin-3 Expression for Plasma Membrane Recruitment and Caveolar Targeting

机译:磷酸果糖激酶肌肉特异性同工型需要Caveolin-3表达用于血浆膜募集和Caveolar靶向

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摘要

Previous co-immunoprecipitation studies have shown that endogenous PFK-M (phosphofructokinase, muscle-specific isoform) associates with caveolin (Cav)-3 under certain metabolic conditions. However, it remains unknown whether Cav-3 expression is required for the plasma membrane recruitment and caveolar targeting of PFK-M. Here, we demonstrate that recombinant expression of Cav-3 dramatically affects the subcellular localization of PFK-M, by targeting PFK-M to the plasma membrane, and by trans-locating PFK-M to caveolae-enriched membrane domains. In addition, we show that the membrane recruitment and caveolar targeting of PFK-M appears to be strictly dependent on the concentration of extracellular glucose. Interestingly, recombinant expression of PFK-M with three Cav-3 mutants [ΔTFT (63 to 65), P104L, and R26Q], which harbor the same mutations as seen in the human patients with Cav-3-related muscle diseases, causes a substantial reduction in PFK-M expression levels, and impedes the membrane recruitment of PFK-M. Analysis of skeletal muscle tissue samples from Cav-3(−/−) mice directly demonstrates that Cav-3 expression regulates the phenotypic behavior of PFK-M. More specifically, in Cav-3-null mice, PFK-M is no longer targeted to the plasma membrane, and is excluded from caveolar membrane domains. As such, our current results may be important in understanding the pathogenesis of Cav-3-related muscle diseases, such as limb-girdle muscular dystrophy-1C, distal myopathy, and rippling muscle disease, that are caused by mutations within the human Cav-3 gene.
机译:先前的免疫共沉淀研究表明,内源性PFK-M(果糖磷酸激酶,肌肉特异性同工型)在某些代谢条件下与小窝蛋白(Cav)-3相关。然而,仍不清楚Cav-3表达是否需要PFK-M的质膜募集和海绵体靶向。在这里,我们证明Cav-3的重组表达通过将PFK-M靶向质膜,以及将PFK-M转移至富含小窝的膜结构域而极大地影响PFK-M的亚细胞定位。另外,我们显示PFK-M的膜募集和海绵体靶向似乎严格取决于细胞外葡萄糖的浓度。有趣的是,PFK-M与三个Cav-3突变体[ΔTFT(​​63至65),P104L和R26Q]的重组表达具有与在Cav-3相关的肌肉疾病患者中所见的相同突变,大幅降低PFK-M表达水平,并阻碍PFK-M的膜募集。对来自Cav-3(-/-)小鼠的骨骼肌组织样品的分析直接表明,Cav-3表达调节PFK-M的表型行为。更具体地说,在Cav-3-无效小鼠中,PFK-M不再靶向质膜,而被排除在海绵膜结构域之外。因此,我们目前的结果对于了解Cav-3相关肌肉疾病的发病机制可能很重要,这些疾病是由人Cav-200内的突变引起的,例如肢带肌肉萎缩症1C,远端肌病和涟漪性肌肉疾病。 3个基因。

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