Kraichely Robert E, Strege Peter R, Sarr Michael G, Kendrick Michael L, Farrugia Gianrico
Enteric Neuroscience Program, Miles and Shirley Fiterman Center for Digestive Diseases, Mayo Clinic College of Medicine, 200 First St. SW, Rochester, MN 55905, USA.
Am J Physiol Gastrointest Liver Physiol. 2009 Apr;296(4):G833-9. doi: 10.1152/ajpgi.90610.2008. Epub 2009 Jan 29.
The L-type Ca2+ channel expressed in gastrointestinal smooth muscle is mechanosensitive. Direct membrane stretch and shear stress result in increased Ca2+ entry into the cell. The mechanism for mechanosensitivity is not known, and mechanosensitivity is not dependent on an intact cytoskeleton. The aim of this study was to determine whether L-type Ca2+ channel mechanosensitivity is dependent on tension in the lipid bilayer in human jejunal circular layer myocytes. Whole cell currents were recorded in the amphotericin-perforated-patch configuration, and lysophosphatidyl choline (LPC), lysophosphatidic acid (LPA), and choline were used to alter differentially the tension in the lipid bilayer. Shear stress (perfusion at 10 ml/min) was used to mechanostimulate L-type Ca2+ channels. The increase in L-type Ca2+ current induced by shear stress was greater in the presence of LPC (large head-to-tail proportions), but not LPA or choline, than in the control perfusion. The increased peak Ca2+ current also did not return to baseline levels as in control conditions. Furthermore, steady-state inactivation kinetics were altered in the presence of LPC, leading to a change in window current. These findings suggest that changes in tension in the plasmalemmal membrane can be transmitted to the mechanosensitive L-type Ca2+ channel, leading to altered activity and Ca2+ entry in the human jejunal circular layer myocyte.
胃肠道平滑肌中表达的L型Ca2+通道具有机械敏感性。直接的膜拉伸和剪切应力会导致更多Ca2+进入细胞。机械敏感性的机制尚不清楚,且其并不依赖于完整的细胞骨架。本研究的目的是确定人空肠环形肌层肌细胞中L型Ca2+通道的机械敏感性是否依赖于脂质双层的张力。采用两性霉素穿孔膜片钳配置记录全细胞电流,并用溶血磷脂酰胆碱(LPC)、溶血磷脂酸(LPA)和胆碱来差异性地改变脂质双层的张力。使用剪切应力(以10 ml/min的速度灌注)对L型Ca2+通道进行机械刺激。与对照灌注相比,在存在LPC(大的头-尾比例)而非LPA或胆碱的情况下,剪切应力诱导的L型Ca2+电流增加更大。增加的Ca2+电流峰值也不像对照条件下那样恢复到基线水平。此外,在存在LPC的情况下,稳态失活动力学发生改变,导致窗电流变化。这些发现表明,质膜张力的变化可传递至机械敏感性L型Ca2+通道,从而导致人空肠环形肌层肌细胞的活性改变和Ca2+内流。