INSERM U1046, Université Montpellier 1, Université Montpellier 2, Montpellier, France.
INSERM U1046, Université Montpellier 1, Université Montpellier 2, Montpellier, France; CHRU Montpellier, Service d'Anatomie Pathologique, Montpellier, France.
Gastroenterology. 2012 Sep;143(3):687-697.e9. doi: 10.1053/j.gastro.2012.05.047. Epub 2012 Jun 5.
BACKGROUND & AIMS: Gastrointestinal development requires regulated differentiation of visceral smooth muscle cells (SMCs) and their contractile activities; alterations in these processes might lead to gastrointestinal neuromuscular disorders. Gastrointestinal SMC development and remodeling involves post-transcriptional modification of messenger RNA. We investigated the function of the RNA-binding protein for multiple splicing 2 (RBPMS2) during normal development of visceral smooth muscle in chicken and expression of its transcript in human pathophysiological conditions.
We used avian replication-competent retroviral misexpression approaches to analyze the function of RBPMS2 in vivo and in primary cultures of chicken SMCs. We analyzed levels of RBPMS2 transcripts in colon samples from pediatric patients with Hirschsprung's disease and patients with chronic pseudo obstruction syndrome (CIPO) with megacystis.
RBPMS2 was expressed strongly during the early stage of visceral SMC development and quickly down-regulated in differentiated and mature SMCs. Misexpression of RBPMS2 in differentiated visceral SMCs induced their dedifferentiation and reduced their contractility by up-regulating expression of Noggin, which reduced activity of bone morphogenetic protein. Visceral smooth muscles from pediatric patients with CIPO expressed high levels of RBPMS2 transcripts, compared with smooth muscle from patients without this disorder.
Expression of RBPMS2 is present in visceral SMC precursors. Sustained expression of RBPMS2 inhibits the expression of markers of SMC differentiation by inhibiting bone morphogenetic protein activity, and stimulates SMC proliferation. RBPMS2 transcripts are up-regulated in patients with CIPO; alterations in RBPMS2 function might be involved in digestive motility disorders, particularly those characterized by the presence of muscular lesions (visceral myopathies).
胃肠道的发育需要内脏平滑肌细胞(SMCs)的分化和收缩活动的调节;这些过程的改变可能导致胃肠道神经肌肉紊乱。胃肠道 SMC 的发育和重塑涉及信使 RNA 的转录后修饰。我们研究了 RNA 结合蛋白多剪接 2(RBPMS2)在鸡内脏平滑肌正常发育过程中的功能及其在人类病理生理条件下的转录本表达。
我们使用禽源复制型逆转录病毒过表达方法,在体内和鸡 SMC 原代培养物中分析 RBPMS2 的功能。我们分析了来自先天性巨结肠症患儿和伴有巨膀胱-巨大肠蠕动障碍综合征(CIPO)的患儿结肠样本中 RBPMS2 转录本的水平。
RBPMS2 在内脏 SMC 发育的早期强烈表达,并在分化和成熟的 SMC 中迅速下调。在分化的内脏 SMC 中过表达 RBPMS2 会诱导其去分化,并通过上调 Noggin 来降低其收缩性,从而降低骨形态发生蛋白的活性。与没有这种疾病的患者相比,患有 CIPO 的儿科患者的内脏平滑肌表达高水平的 RBPMS2 转录本。
RBPMS2 表达存在于内脏 SMC 前体中。持续表达 RBPMS2 通过抑制骨形态发生蛋白活性抑制 SMC 分化标志物的表达,并刺激 SMC 增殖。在 CIPO 患者中,RBPMS2 转录本上调;RBPMS2 功能的改变可能与消化运动障碍有关,特别是那些伴有肌肉病变的疾病(内脏肌病)。