首页> 外文期刊>American Journal of Physiology >Immunocytochemical evidence for PDBu-induced activation of RhoA/ROCK in human internal anal sphincter smooth muscle cells.
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Immunocytochemical evidence for PDBu-induced activation of RhoA/ROCK in human internal anal sphincter smooth muscle cells.

机译:PDBu诱导的人体内肛门括约肌平滑肌细胞中RhoA / ROCK活化的免疫细胞化学证据。

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摘要

Studies were performed to determine the unknown status of PKC and RhoA/ROCK in the phorbol 12,13-dibutyrate (PDBu)-stimulated state in the human internal anal sphincter (IAS) smooth muscle cells (SMCs). We determined the effects of PDBu (10(-7) M), the PKC activator, on PKCalpha and RhoA and ROCK II translocation in the human IAS SMCs. We used immunocytochemistry and fluorescence microcopy in the basal state, following PDBu, and before and after PKC inhibitor calphostin C (10(-6) M), cell-permeable RhoA inhibitor C3 exoenzyme (2.5 mug/ml), and ROCK inhibitor Y 27632 (10(-6) M). We also determined changes in the SMC lengths via computerized digital micrometry. In the basal state PKCalpha was distributed almost uniformly throughout the cell, whereas RhoA and ROCK II were located in the higher intensities toward the periphery. PDBu caused significant translocation of PKCalpha, RhoA, and ROCK II. PDBu-induced translocation of PKCalpha was attenuated by calphostin C and not by C3 exoenzyme and Y 27632. However, PDBu-induced translocation of RhoA was blocked by C3 exoenzyme, and that of ROCK II was attenuated by both C3 exoenzyme and Y 27632. Contraction of the human IAS SMCs caused by PDBu in parallel with RhoA/ROCK II translocation was attenuated by C3 exoenzyme and Y 27632 but not by calphostin C. In human IAS SMCs RhoA/ROCK compared with PKC are constitutively active, and contractility by PDBu is associated with RhoA/ROCK activation rather than PKC. The relative contribution of RhoA/ROCK vs. PKC in the pathophysiology and potential therapy for the IAS dysfunction remains to be determined.
机译:进行研究以确定在人体内肛门括约肌(IAS)平滑肌细胞(SMCs)中受佛波12,13-二丁酸(PDBu)刺激的状态下PKC和RhoA / ROCK的未知状态。我们确定了PDBu(10(-7)M),PKC激活剂对人IAS SMCs中PKCalpha和RhoA和ROCK II易位的影响。我们在基础状态下,PDBu之后以及PKC抑制剂钙磷蛋白C(10(-6)M),细胞渗透性RhoA抑制剂C3外酶(2.5马克/毫升)和ROCK抑制剂Y 27632之前和之后使用免疫细胞化学和荧光显微镜检查(10(-6)M)。我们还通过计算机数字测微法确定了SMC长度的变化。在基础状态下,PKCalpha几乎均匀地分布在整个细胞中,而RhoA和ROCK II则以较高的强度向周围分布。 PDBu导致PKCalpha,RhoA和ROCK II的明显移位。 PDBu诱导的PKCalpha易位被钙磷蛋白C减弱,而不是被C3外切酶和Y 27632减弱。但是,PDBu诱导的RhoA易位被C3外切酶阻断,而ROCK II的PKCalpha被C3外切酶和Y 27632减弱。 PDBu与RhoA / ROCK II易位同时引起的人IAS SMC中的C3外切酶和Y 27632减弱,但钙磷蛋白C则不。在人IAS SMC中,RhoA / ROCK与PKC相比具有组成性活性,并且PDBu的收缩性相关使用RhoA / ROCK激活而不是PKC。 RhoA / ROCK与PKC在IAS功能障碍的病理生理学和潜在疗法中的相对贡献尚待确定。

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