Distinct Effects of Ca2+ Sparks on Cerebral Artery and Airway Smooth Muscle Cell Tone in Mice and Humans

نویسندگان

  • Qing-Yang Zhao
  • Yong-Bo Peng
  • Xiao-Jing Luo
  • Xi Luo
  • Hao Xu
  • Ming-Yu Wei
  • Qiu-Ju Jiang
  • Wen-Er Li
  • Li-Qun Ma
  • Jin-Chao Xu
  • Xiao-Cao Liu
  • Dun-An Zang
  • Yu-San She
  • He Zhu
  • Jinhua Shen
  • Ping Zhao
  • Lu Xue
  • Meng-Fei Yu
  • Weiwei Chen
  • Ping Zhang
  • Xiangning Fu
  • Jingyu Chen
  • Xiaowei Nie
  • Chenyou Shen
  • Shu Chen
  • Shanshan Chen
  • Jingcao Chen
  • Sheng Hu
  • Chunbin Zou
  • Gangjian Qin
  • Ying Fang
  • Jiuping Ding
  • Guangju Ji
  • Yun-Min Zheng
  • Tengyao Song
  • Yong-Xiao Wang
  • Qing-Hua Liu
چکیده

The effects of Ca2+ sparks on cerebral artery smooth muscle cells (CASMCs) and airway smooth muscle cells (ASMCs) tone, as well as the underlying mechanisms, are not clear. In this investigation, we elucidated the underlying mechanisms of the distinct effects of Ca2+ sparks on cerebral artery smooth muscle cells (CASMCs) and airway smooth muscle cells (ASMCs) tone. In CASMCs, owing to the functional loss of Ca2+-activated Cl- (Clca) channels, Ca2+ sparks activated large-conductance Ca2+-activated K+ channels (BKs), resulting in a decreases in tone against a spontaneous depolarization-caused high tone in the resting state. In ASMCs, Ca2+ sparks induced relaxation through BKs and contraction via Clca channels. However, the integrated result was contraction because Ca2+ sparks activated BKs prior to Clca channels and Clca channels-induced depolarization was larger than BKs-caused hyperpolarization. However, the effects of Ca2+ sparks on both cell types were determined by L-type voltage-dependent Ca2+ channels (LVDCCs). In addition, compared with ASMCs, CASMCs had great and higher amplitude Ca2+ sparks, a higher density of BKs, and higher Ca2+ and voltage sensitivity of BKs. These differences enhanced the ability of Ca2+ sparks to decrease CASMC and to increase ASMC tone. The higher Ca2+ and voltage sensitivity of BKs in CASMCs than ASMCs were determined by the β1 subunits. Moreover, Ca2+ sparks showed the similar effects on human CASMC and ASMC tone. In conclusions, Ca2+ sparks decrease CASMC tone and increase ASMC tone, mediated by BKs and Clca channels, respectively, and finally determined by LVDCCs.

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عنوان ژورنال:

دوره 13  شماره 

صفحات  -

تاریخ انتشار 2017