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钙结合蛋白 1 耗竭对肌纤维钙瞬变和能量利用的影响及肌质网钙通道 1 稳定剂的治疗机会。

Effect of Calstabin1 depletion on calcium transients and energy utilization in muscle fibers and treatment opportunities with RyR1 stabilizers.

机构信息

Global Imaging Group, Novartis Institutes for BioMedical Research, Basel, Switzerland.

出版信息

PLoS One. 2013 Nov 26;8(11):e81277. doi: 10.1371/journal.pone.0081277. eCollection 2013.

Abstract

Depletion of calstabin1 (FKBP12) from the RyR1 channel and consequential calcium leakage from the sarcoplasmic reticulum (SR) is found in certain disease conditions such as dystrophy, aging or muscle overuse. Here, we first assessed the effect of calstabin1 depletion on resting Ca(2+) levels and transients. We found that depletion of calstabin1 with the calstabin1-dissociation compound FK506 increased the release of calcium from the SR by 14 % during tetanic stimulation (50 Hz, 300 ms) and delayed cytosolic calcium removal. However, we did not find a significant increase in resting cytosolic Ca(2+) levels. Therefore, we tested if increased SERCA activity could counterbalance calcium leakage. By measuring the energy utilization of muscle fibers with and without FK506 treatment, we observed that FK506-treatment increased oxygen consumption by 125% compared to baseline levels. Finally, we found that pretreatment of muscle fibers with the RyR1 stabilizer JTV-519 led to an almost complete normalization of calcium flux dynamics and energy utilization. We conclude that cytosolic calcium levels are mostly preserved in conditions with leaky RyR1 channels due to increased SERCA activity. Therefore, we suggest that RyR1 leakiness might lead to chronic metabolic stress, followed by cellular damage, and RyR1 stabilizers could potentially protect diseased muscle tissue.

摘要

钙调结合蛋白 1(FKBP12)从 RyR1 通道耗竭以及随之而来的肌浆网(SR)中的钙渗漏,在某些疾病条件下如营养不良、衰老或肌肉过度使用中被发现。在这里,我们首先评估了钙调结合蛋白 1 耗竭对静息 Ca(2+)水平和瞬变的影响。我们发现,用钙调结合蛋白 1 解离化合物 FK506 耗竭钙调结合蛋白 1 增加了在强直刺激(50 Hz,300 ms)时 SR 中钙的释放,增加了 14%,并延迟了胞质钙的清除。然而,我们并没有发现静息胞质 Ca(2+)水平有显著增加。因此,我们测试了增加 SERCA 活性是否可以抵消钙渗漏。通过测量有和没有 FK506 处理的肌纤维的能量利用,我们观察到 FK506 处理使氧消耗比基线水平增加了 125%。最后,我们发现,用 RyR1 稳定剂 JTV-519 预处理肌纤维几乎完全使钙流动力学和能量利用正常化。我们得出结论,由于 SERCA 活性的增加,在 RyR1 渗漏通道的情况下,胞质 Ca(2+)水平大多得到保留。因此,我们建议 RyR1 渗漏可能导致慢性代谢应激,随后是细胞损伤,而 RyR1 稳定剂可能潜在地保护患病的肌肉组织。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/595c/3841141/3fe738ff231c/pone.0081277.g001.jpg

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