首页> 外文期刊>The Journal of Physiology >Effect of saponin treatment on the sarcoplasmic reticulum of rat, cane toad and crustacean (yabby) skeletal muscle.
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Effect of saponin treatment on the sarcoplasmic reticulum of rat, cane toad and crustacean (yabby) skeletal muscle.

机译:皂苷处理对大鼠,甘蔗蟾蜍和甲壳类(yabby)骨骼肌肌浆网的影响。

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1. Mechanically skinned fibres from skeletal muscles of the rat, toad and yabby were used to investigate the effect of saponin treatment on sarcoplasmic reticulum (SR) Ca2+ loading properties. The SR was loaded submaximally under control conditions before and after treatment with saponin and SR Ca2+ was released with caffeine. 2. Treatment with 10 micrograms ml-1 saponin greatly reduced the SR Ca2+ loading ability of skinned fibres from the extensor digitorum longus muscle of the rat with a rate constant of 0.24 min-1. Saponin concentrations up to 150 micrograms ml-1 and increased exposure time up to 30 min did not further reduce the SR Ca2+ loading ability of the SR, which indicates that the inhibitory action of 10-150 micrograms ml-1 saponin is not dose dependent. The effect of saponin was also not dependent on the state of polarization of the transverse-tubular system. 3. Treatment with saponin at concentrations up to 100 micrograms ml-1 for 30 min did not affect the Ca2+ loading ability of SR in skinned skeletal muscle fibres from the twitch portion of the toad iliofibularis muscle but SR Ca2+ loading ability decreased markedly with a time constant of 0.22 min-1 in the presence of 150 micrograms ml-1 saponin. 4. The saponin dependent increase in permeability could be reversed in both rat and toad fibres by short treatment with 6 microM Ruthenium Red, a potent SR Ca2+ channel blocker, suggesting that saponin does affect the SR Ca2+ channel properties in mammalian and anuran skeletal muscle. 5. Treatment of skinned fibres of long sarcomere length (> 6 microns) from the claw muscle of the yabby (a freshwater decapod crustacean) with 10 micrograms ml-1 saponin for 30 min abolished the ability of the SR to load Ca2+, indicating that saponin affects differently the SR from skeletal muscles of mammals, anurans and crustaceans. 6. It is concluded that at relatively low concentrations, saponin causes inhibition of the skeletal SR Ca2+ loading ability in a species dependent manner, probably by increasing the Ca2+ loss through SR Ca2+ release channels.
机译:1.使用来自大鼠,蟾蜍和鸭and鱼骨骼肌的机械去皮纤维研究皂苷处理对肌浆网(SR)Ca2 +负载特性的影响。在皂苷处理前后,SR在控制条件下达到最大负荷,并且咖啡因释放SR Ca2 +。 2.用10微克ml-1皂苷处理可大大降低大鼠趾长伸肌的皮肤纤维的SR Ca2 +负载能力,速率常数为0.24 min-1。高达150微克ml-1的皂苷浓度和长达30分钟的暴露时间增加并没有进一步降低SR的SR Ca2 +负载能力,这表明10-150微克ml-1皂苷的抑制作用与剂量无关。皂苷的作用也不取决于横管系统的极化状态。 3.用浓度最高为100微克ml-1的皂素处理30分钟,不会影响蟾蜍腓肠肌抽搐部位皮肤骨骼肌纤维中SR的Ca2 +负载能力,但SR Ca2 +负载能力随时间显着下降。在150微克ml-1皂苷存在下的0.22 min-1常数。 4.通过用6 microM Ruthenium Red(一种有效的SR Ca2 +通道阻滞剂)短时间处理,可以在大鼠和蟾蜍纤维中逆转皂苷依赖性的通透性增加,这表明皂苷确实会影响哺乳动物和无核骨骼肌的SR Ca2 +通道特性。 5.用10微克ml-1皂苷处理Yabby(淡水十足类甲壳动物)的爪肌的长肌节长(> 6微米)的皮肤纤维,持续30分钟,这消除了SR加载Ca2 +的能力,这表明皂苷对哺乳动物,无脊椎动物和甲壳类动物骨骼肌的SR影响不同。 6.结论是,在相对较低的浓度下,皂苷可能以依赖物种的方式抑制骨骼肌SR Ca2 +的负载能力,可能是通过增加SR Ca2 +释放通道的Ca2 +损失而引起的。

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