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伊维菌素和麦迪霉素对兔和大鼠骨骼肌肌浆网中兰尼碱受体及Ca2+ -ATP酶的影响。

Effects of ivermectin and midecamycin on ryanodine receptors and the Ca2+-ATPase in sarcoplasmic reticulum of rabbit and rat skeletal muscle.

作者信息

Ahern G P, Junankar P R, Pace S M, Curtis S, Mould J A, Dulhunty A F

机构信息

Muscle Research Group, John Curtin School of Medical Research, PO Box 334, Canberra, ACT 2601, Australia.

出版信息

J Physiol. 1999 Jan 15;514 ( Pt 2)(Pt 2):313-26. doi: 10.1111/j.1469-7793.1999.313ae.x.

Abstract
  1. Ryanodine receptor (RyR) Ca2+ channels in the sarcoplasmic reticulum (SR) of skeletal muscle are regulated by the 12 kDa FK506- (or rapamycin-) binding protein (FKBP12). Rapamycin can also activate RyR channels with FKBP12 removed, suggesting that compounds with macrocyclic lactone ring structures can directly activate RyRs. Here we tested this hypothesis using two other macrocyclic lactone compounds, ivermectin and midecamycin. 2. Rabbit skeletal RyRs were examined in lipid bilayers. Ivermectin (cis, 0.66-40 microM) activated six of eight native, four of four control-incubated and eleven of eleven FKBP12-'stripped' RyR channels. Midecamycin (cis, 10-30 microM) activated three of four single native channels, six of eight control-incubated channels and six of seven FKBP12-stripped channels. Activity declined when either drug was washed out. 3. Neither ivermectin nor midecamycin removed FKBP12 from RyRs. Western blots of terminal cisternae (TC), incubated for 15 min at 37 C with 40 microM ivermectin or midecamycin, showed normal amounts of FKBP12. In contrast, no FKBP12 was detected after incubation with 40 microM rapamycin. 4. Ivermectin reduced Ca2+ uptake by the SR Ca2+-Mg2+-ATPase. Ca2+ uptake by TC fell to approximately 40% in the presence of ivermectin (10 microM), both with and without 10 microM Ruthenium Red. Ca2+ uptake by longitudinal SR also fell to approximately 40% with 10 microM ivermectin. Midecamycin (10 microM) reduced Ca2+ uptake by TC vesicles to approximately 76% without Ruthenium Red and to approximately 90 % with Ruthenium Red. 5. The rate of rise of extravesicular [Ca2+] increased approximately 2-fold when 10 microM ivermectin was added to TC vesicles that had been partially loaded with Ca2+ and then Ca2+ uptake blocked by 200 nM thapsigargin. Ivermectin also potentiated caffeine-induced Ca2+ release to approximately 140% of control. These increases in Ca2+ release were not seen with midecamycin. 6. Ivermectin, but not midecamycin, reversibly reduced Ca2+ loading in four of six skinned rat extensor digitorum longus (EDL) fibres to approximately 90%, and reversibly increased submaximal caffeine-induced contraction in five of eight fibres by approximately 110% of control. Neither ivermectin nor midecamycin altered twitch or tetanic tension in intact EDL muscle fibres within 20 min of drug addition. 7. The results confirm the hypothesis that compounds with a macrocyclic lactone ring structure can directly activate RyRs. Unexpectedly, ivermectin also reduced Ca2+ uptake into the SR. These effects of ivermectin on SR Ca2+ handling may explain some effects of the macrolide drugs on mammals.
摘要
  1. 骨骼肌肌浆网(SR)中的兰尼碱受体(RyR)Ca2+通道受12 kDa FK506-(或雷帕霉素-)结合蛋白(FKBP12)调控。雷帕霉素在去除FKBP12后也能激活RyR通道,这表明具有大环内酯环结构的化合物可直接激活RyRs。在此,我们使用另外两种大环内酯化合物伊维菌素和麦迪霉素来验证这一假设。2. 在脂质双分子层中检测兔骨骼肌RyRs。伊维菌素(顺式,0.66 - 40 microM)激活了8个天然RyR通道中的6个、4个对照孵育通道中的4个以及11个FKBP12-“去除”通道中的11个。麦迪霉素(顺式,10 - 30 microM)激活了4个单个天然通道中的3个、8个对照孵育通道中的6个以及7个FKBP12-去除通道中的6个。当洗去任何一种药物时,活性下降。3. 伊维菌素和麦迪霉素均未从RyRs中去除FKBP12。终末池(TC)在37℃下与40 microM伊维菌素或麦迪霉素孵育15分钟后的蛋白质免疫印迹显示FKBP12含量正常。相比之下,与40 microM雷帕霉素孵育后未检测到FKBP12。4. 伊维菌素降低了SR Ca2+-Mg2+-ATP酶的Ca2+摄取。在存在伊维菌素(10 microM)的情况下,无论有无10 microM钌红,TC的Ca2+摄取均降至约40%。10 microM伊维菌素也使纵向SR的Ca2+摄取降至约40%。麦迪霉素(10 microM)使TC囊泡在无钌红时的Ca2+摄取降至约76%,在有钌红时降至约90%。5. 当向已部分加载Ca2+然后Ca2+摄取被200 nM毒胡萝卜素阻断的TC囊泡中添加10 microM伊维菌素时,囊泡外[Ca2+]的上升速率增加了约2倍。伊维菌素还使咖啡因诱导的Ca2+释放增强至对照的约140%。麦迪霉素未观察到这些Ca2+释放的增加。6. 伊维菌素(而非麦迪霉素)使6个去皮大鼠趾长伸肌(EDL)纤维中的4个纤维的Ca2+负载可逆性降低至约90%,并使8个纤维中的5个纤维的亚最大咖啡因诱导收缩可逆性增加至对照的约110%。在添加药物后20分钟内,伊维菌素和麦迪霉素均未改变完整EDL肌纤维的单收缩或强直张力。7. 结果证实了具有大环内酯环结构的化合物可直接激活RyRs这一假设。出乎意料的是,伊维菌素还减少了Ca2+摄取到SR中。伊维菌素对SR Ca2+处理的这些作用可能解释了大环内酯类药物对哺乳动物的一些作用。

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