首页> 外文期刊>Cell Calcium: The International Interdisciplinary Forum for Research on Calcium >Altered calcium pump and secondary deficiency of gamma-sarcoglycan and microspan in sarcoplasmic reticulum membranes isolated from delta-sarcoglycan knockout mice.
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Altered calcium pump and secondary deficiency of gamma-sarcoglycan and microspan in sarcoplasmic reticulum membranes isolated from delta-sarcoglycan knockout mice.

机译:钙泵改变和继发缺乏的δ-sarcoglycan基因敲除小鼠的肌浆网膜中的γ-sarcoglycan和微跨度。

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摘要

Sarcoglycans (SGs) and sarcospan (SSPN) are transmembrane proteins of the dystrophin-glycoprotein complex. Mutations in the genes encoding SGs cause many inherited forms of muscular dystrophy. In this study, using purified membranes of wild-type (WT) and delta-SG knockout (KO) mice, we found the specific localization of the SG-SSPN isoforms in transverse tubules (TT) and sarcoplasmic reticulum (SR) membranes. Immunoblotting revealed that the absence of delta-SG isoforms in TT and SR results in a secondary deficiency of gamma-SG and microSPN. Our results showed augmented ATP hydrolytic activity, ATP-dependent calcium uptake and passive calcium efflux, probably through SERCA1 in KO compared to WT mice. Furthermore, we found a conformational change in SERCA1 isolated from KO muscle as demonstrated by calorimetric analysis. Following these alterations with mechanical properties, we found an increase in force in KO muscle with the same rate of fatigue but with a decreased fatigue recovery compared to WT. Together our observations suggest, for the first time, that the delta-SG isoforms may stabilize the expression of gamma-SG and microSPN in the TT and SR membranes and that this possible complex may play a role in the maintenance of a stable level of resting cytosolic calcium concentration in skeletal muscle.
机译:肌糖蛋白(SGs)和肌膜糖蛋白(SSPN)是肌营养不良蛋白-糖蛋白复合物的跨膜蛋白。编码SGs的基因中的突变引起许多遗传性肌营养不良症。在这项研究中,使用野生型(WT)和Delta-SG基因敲除(KO)小鼠的纯化膜,我们发现了SG-SSPN亚型在横管(TT)和肌浆网(SR)膜中的特定定位。免疫印迹显示,TT和SR中不存在delta-SG亚型,导致继发性缺乏γ-SG和microSPN。我们的研究结果表明,与野生型小鼠相比,KO中的SERCA1可能增强了ATP的水解活性,ATP依赖性钙的吸收和被动钙的流出。此外,我们发现量热分析表明,从KO肌肉分离出的SERCA1发生了构象变化。在机械性能发生这些变化之后,我们发现与WT相比,在具有相同疲劳率但疲劳恢复降低的情况下,KO肌肉的力量有所增加。我们的观察结果在一起首次表明,δ-SG亚型可能稳定了TT和SR膜中的γ-SG和microSPN的表达,而且这种可能的复合物可能在维持稳定的静息水平中发挥作用骨骼肌中的胞质钙浓度。

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