Hossain M Moazzem, Crish James F, Eckert Richard L, Lin Jim J-C, Jin Jian-Ping
Section of Molecular Cardiology, Evanston Northwestern Healthcare and Northwestern University Fienberg School of Medicine, Evanston, Illinois 60201, USA.
J Biol Chem. 2005 Dec 23;280(51):42442-53. doi: 10.1074/jbc.M509952200. Epub 2005 Oct 18.
Calponin is an extensively studied actin-binding protein, but its function is not well understood. Among three isoforms of calponin, h2-calponin is found in both smooth muscle and non-muscle cells. The present study demonstrates that epidermal keratinocytes and fibroblast cells express significant amounts of h2-calponin. The expression of h2-calponin is cell anchorage-dependent. The levels of h2-calponin decrease when cells are rounded up and remain low when cells are prevented from adherence to a culture dish. h2-calponin expression resumes after the floating cells are allowed to form a monolayer in plastic dish. Cell cultures on polyacrylamide gels of different stiffness demonstrated that h2-calponin expression is affected by the mechanical properties of the culture matrix. When cells are cultured on soft gel that applies less traction force to the cell and, therefore, lower mechanical tension in the cytoskeleton, the level of h2-calponin is significantly lower than that in cells cultured on hard gel or rigid plastic dish. Force-expression of h2-calponin enhanced the resistance of the actin filaments to cytochalasin B treatment. Keratinocyte differentiation is accompanied by a mechanical tension-related up-regulation of h2-calponin. Lowering the tension of actin cytoskeleton by inhibiting non-muscle myosin II ATPase decreased h2-calponin expression. In contrast to the mechanical tension regulation of endogenous h2-calponin, the expression of h2-calponin using a cytomegalovirus promotor was independent of the stiffness of culture matrix. The results suggest that h2-calponin represents a novel manifestation of mechanical tension responsive gene regulation that may modify cytoskeleton function.
钙调蛋白是一种经过广泛研究的肌动蛋白结合蛋白,但其功能尚未完全明确。在钙调蛋白的三种同工型中,h2-钙调蛋白存在于平滑肌细胞和非肌肉细胞中。本研究表明,表皮角质形成细胞和成纤维细胞表达大量的h2-钙调蛋白。h2-钙调蛋白的表达依赖于细胞锚定。当细胞变圆时,h2-钙调蛋白水平下降,并且当细胞被阻止贴附于培养皿时,该水平保持较低。当悬浮细胞在塑料培养皿中形成单层后,h2-钙调蛋白表达恢复。在不同硬度的聚丙烯酰胺凝胶上进行细胞培养表明,h2-钙调蛋白的表达受培养基质机械性能的影响。当细胞在对细胞施加较小牵引力、因此细胞骨架中机械张力较低的软凝胶上培养时,h2-钙调蛋白水平显著低于在硬凝胶或刚性塑料培养皿上培养的细胞。h2-钙调蛋白的强制表达增强了肌动蛋白丝对细胞松弛素B处理的抗性。角质形成细胞分化伴随着与机械张力相关的h2-钙调蛋白上调。通过抑制非肌肉肌球蛋白II ATP酶降低肌动蛋白细胞骨架的张力会降低h2-钙调蛋白的表达。与内源性h2-钙调蛋白的机械张力调节相反,使用巨细胞病毒启动子的h2-钙调蛋白表达与培养基质的硬度无关。结果表明,h2-钙调蛋白代表了一种机械张力响应基因调控的新表现形式,可能会改变细胞骨架功能。