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首页> 外文期刊>American Journal of Physiology >Small-conductance, Ca~(2+)-activated K~+ channel 2 is the key functional component of SK channels in mouse urinary bladder
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Small-conductance, Ca~(2+)-activated K~+ channel 2 is the key functional component of SK channels in mouse urinary bladder

机译:小电导,Ca〜(2+)激活的K〜+通道2是小鼠膀胱SK通道的关键功能组件

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Small-conductance Ca~(2+)-activated K~+ (SK) channels play an important role in regulating the frequency and in shaping urinary bladder smooth muscle (UBSM) action potentials, thereby modulating contractility. Here we investigated a role for the SK2 member of the SK family (SK1-3) utilizing: 1) mice expressing beta-galactosidase (beta-gal) under the direction of the SK2 promoter (SK2 beta-gal mice) to localize SK2 expression and 2) mice lacking SK2 gene expression (SK2~(-/-) mice) to assess SK2 function. In SK2 beta-gal mice, UBSM staining was observed, but staining was undetected in the urothelium. Consistent with this, urothelial SK2 mRNA was determined to be 4% of that in UBSM. Spontaneous phasic contractions in wild-type (SK2~(+/+)) UBSM strips were potentiated (259% of control) by the selective SK channel blocker apamin (EC_(50) = 0.16 nM), whereas phasic contractions of SK2~(-/-) strips were unaffected. Nerve-mediated contractions of SK2~(+/+) UBSM strips were also increased by apamin, an effect absent in SK2~(-/-) strips. Apamin increased the sensitivity of SK2~(+/+) UBSM strips to electrical field stimulation, since pretreatment with apamin decreased the frequency required to reach a 50% maximal contraction (vehicle, 21 +- 4 Hz, n = 6; apamin, 12 +- 2 Hz, n = 7; P < 0.05). In contrast, the sensitivity of SK2~(-/-) UBSM strips was unaffected by apamin. Here we provide novel insight into the molecular basis of SK channels in the urinary bladder, demonstrating that the SK2 gene is expressed in the bladder and that it is essential for the ability of SK channels to regulate UBSM contractility.
机译:小电导Ca〜(2+)激活的K〜+(SK)通道在调节频率和塑造膀胱平滑肌(UBSM)动作电位中起重要作用,从而调节收缩力。在这里,我们利用以下方面研究了SK家族(SK1-3)的SK2成员的作用:1)在SK2启动子的方向上表达β-半乳糖苷酶(β-gal)的小鼠(SK2β-gal小鼠)来定位SK2表达2)缺乏SK2基因表达的小鼠(SK2〜(-/-)小鼠)评估SK2功能。在SK2 beta-gal小鼠中,观察到UBSM染色,但在尿路上皮中未检测到染色。与此相一致,尿路上皮SK2 mRNA被确定为UBSM中的4%。野生型(SK2〜(+ / +))UBSM条中的自发性相位收缩通过选择性SK通道阻滞剂阿帕明(EC_(50)= 0.16 nM)增强(对照组的259%),而SK2〜(( -/-)条不受影响。谷氨酰胺也增加了神经介导的SK2〜(+ / +)UBSM条的收缩,这在SK2〜(-/-)条中是没有的。糊精增加了SK2〜(+ / +)UBSM条对电场刺激的敏感性,因为用糊精预处理降低了达到50%最大收缩率所需的频率(车辆21±4 Hz,n = 6;糊精12 +-2 Hz,n = 7; P <0.05)。相比之下,SK2〜(-/-)UBSM试纸条的敏感度不受谷氨酰胺的影响。在这里,我们提供了膀胱SK通道分子基础的新颖见解,表明SK2基因在膀胱中表达,并且对于SK通道调节UBSM收缩力的能力至关重要。

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