首页> 外文期刊>The Journal of Urology >Over expression of smooth muscle specific caldesmon by transfection and intermittent agonist induced contraction alters cellular morphology and restores differentiated smooth muscle phenotype.
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Over expression of smooth muscle specific caldesmon by transfection and intermittent agonist induced contraction alters cellular morphology and restores differentiated smooth muscle phenotype.

机译:通过转染和间歇激动剂诱导的收缩过度表达平滑肌特异性caldesmon,可改变细胞形态并恢复分化的平滑肌表型。

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PURPOSE: The thin filament associated protein h-caldesmon (h-CaD) modulates actin myosin interaction and contraction. Bladder outlet obstruction and detrusor hypertrophy are associated with the over expression of the nonmuscle CaD isoform l-CaD. It implies a poorly differentiated state of bladder myocytes and cytoskeletal remodeling in detrusor hypertrophy. We determined if h-CaD expression can be increased in a unique bladder smooth muscle (BSM) cell line derived from obstructed rabbit bladder smooth muscle that over expresses l-CaD. We examined whether the genetic restoration of h-caldesmon is possible in bladder smooth muscle cells by transfection or by agonist mediated contraction and whether this manipulation would alter cellular morphology. MATERIALS AND METHODS: BSM cells were transfected with chicken h-CaD cDNA inserted into a mammalian vector. In another experiment BSM cells underwent intermittent bethanechol induced stimulation. h-CaD mRNA and protein were quantified with reverse transcriptase-polymerase chain reaction and Western blot analyses. Cell morphology was assessed using phase, video and confocal microscopy after double immunostaining with antibodies against alpha-actin and caldesmon. RESULTS: Reverse transcriptase-polymerase chain reaction using primers specific for the transfected vector and h-CaD cDNA confirmed stable transfection of cells and increased content of h-CaD mRNA. Following bethanechol induced intermittent contraction Western blotting revealed 80% relative over expression of h-CaD in treated transfected cell lines (p <0.05) and 74% (not significant) in treated nontransfected controls. Confocal immunofluorescence microscopy revealed CaD in the cytoplasmic filaments co-localized to alpha-actin in the main cell body and perinuclear region in transfected cells, in contrast to the diffuse, irregular distribution of these filaments in control cells. CONCLUSIONS: A unique bladder myocyte cell line was successfully and stably transfected with h-CaD cDNA. We show that agonist induced intermittent contraction preferentially increases h-CaD expression, the predominant CaD in nonobstructed bladder smooth muscle, and the restoration of h-CaD alters cell morphology and the organization of cytoplasmic filaments in cells derived from obstructed rabbit detrusor musculature.
机译:目的:细丝相关蛋白h-caldesmon(h-CaD)调节肌动蛋白肌球蛋白的相互作用和收缩。膀胱出口梗阻和逼尿肌肥大与非肌肉CaD同工型I-CaD的过度表达有关。这暗示着逼尿肌肥大中膀胱肌细胞的低分化状态和细胞骨架重塑。我们确定是否可以在过度表达l-CaD的阻塞性兔膀胱平滑肌衍生的独特膀胱平滑肌(BSM)细胞系中增加h-CaD表达。我们检查了是否可以通过转染或激动剂介导的收缩在膀胱平滑肌细胞中进行h-caldesmon的基因恢复,以及这种操作是否会改变细胞形态。材料与方法:用插入哺乳动物载体的鸡h-CaD cDNA转染BSM细胞。在另一个实验中,BSM细胞受到间歇性苯乙二酚诱导的刺激。 h-CaD mRNA和蛋白质通过逆转录聚合酶链反应和Western印迹分析进行定量。在用抗α-肌动蛋白和卡尔德斯蒙的抗体双重免疫染色后,使用相,视频和共聚焦显微镜评估细胞形态。结果:使用对转染载体和h-CaD cDNA特异的引物进行逆转录酶-聚合酶链反应,证实了细胞的稳定转染和h-CaD mRNA含量的增加。在苯乙二酚诱导间歇性收缩后,Western印迹显示在处理过的转染细胞系中h-CaD相对表达超过80%(p <0.05),在处理过的未转染对照中达到74%(不显着)。共聚焦免疫荧光显微镜检查发现,在转染细胞中,胞浆细丝中的CaD共同定位在主要细胞体和核周区域中的α-肌动蛋白上,而这些细丝在对照细胞中的分布是不规则的。结论:成功地和稳定地转染了h-CaD cDNA独特的膀胱心肌细胞系。我们表明激动剂诱导的间歇性收缩优先增加h-CaD的表达,在非阻塞性膀胱平滑肌中占主导地位的CaD,并且h-CaD的恢复改变了细胞形态和细胞质丝的组织,这些细胞来自阻塞的兔逼尿肌组织。

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