Bredoux Raymonde, Corvazier Elisabeth, Dally Saoussen, Chaabane Chiraz, Bobe Regis, Raies Aly, Moreau Alain, Enouf Jocelyne
Inserm U 689, IFR 139, Hôpital Lariboisière, Paris, France.
Platelets. 2006 Sep;17(6):421-33. doi: 10.1080/09537100600758719.
The aetiology of adolescent idiopathic scoliosis (AIS), the most common form of scoliosis, is unclear. Previous studies showed controversial platelet abnormalities including intracellular calcium. Platelet Ca2+ homeostasis is controlled by a multi-Ca2+-ATPase system including SERCA (sarco/endoplasmic reticulum Ca2+-ATPase) and PMCA (plasma membrane Ca2+-ATPase) isoforms. Here, we first investigated the expression of PMCA4b, SERCA3a and SERCA2b isoforms in platelets of 17 patients with AIS. Patients presenting thoracic curves were found to present a higher PMCA4b expression coupled to a lower SERCA3a one in agreement with an abnormality in platelet maturation. Indeed, using PMA-treated MEG 01 cells, an in vitro model of megakaryocytopoiesis, we found an increase in SERCA3a expression, associated to a caspase-3 mediated C terminal proteolysis of PMCA4b. To look whether platelets reflect a basic defect in cell differentiation, we next identified osteoblast Ca2+-ATPases and studied their expressions in AIS. Major expressions of PMCA4b and SERCA2b were found in normal osteoblasts. Comparing platelets and osteoblasts in two additional patients with AIS, we found opposite and concerted regulations of the expressions of PMCA4b and caspase-3 substrate, PARP in both cell types. A systemic defect in cell differentiation involving caspase-3 can be proposed as a novel mechanism in the etiopathogenesis of the most frequent type of AIS. *R. Bredoux and E. Corvazier contributed equally to this work.
青少年特发性脊柱侧凸(AIS)是脊柱侧凸最常见的形式,其病因尚不清楚。先前的研究显示了包括细胞内钙在内的有争议的血小板异常。血小板Ca2+稳态由一个多Ca2+ - ATP酶系统控制,该系统包括肌浆网/内质网Ca2+ - ATP酶(SERCA)和质膜Ca2+ - ATP酶(PMCA)亚型。在此,我们首先研究了17例AIS患者血小板中PMCA4b、SERCA3a和SERCA2b亚型的表达。发现呈现胸弯的患者PMCA4b表达较高,而SERCA3a表达较低,这与血小板成熟异常一致。事实上,使用经佛波酯(PMA)处理的MEG 01细胞(一种巨核细胞生成的体外模型),我们发现SERCA3a表达增加,同时伴有PMCA4b的半胱天冬酶-3介导的C末端蛋白水解。为了探究血小板是否反映了细胞分化的基本缺陷,我们接下来鉴定了成骨细胞Ca2+ - ATP酶并研究了它们在AIS中的表达。在正常成骨细胞中发现了PMCA4b和SERCA2b的主要表达。在另外两名AIS患者中比较血小板和成骨细胞,我们发现在这两种细胞类型中PMCA4b和半胱天冬酶-3底物聚(ADP - 核糖)聚合酶(PARP)的表达存在相反且协同的调节。涉及半胱天冬酶-3的细胞分化系统性缺陷可被认为是最常见类型AIS发病机制中的一种新机制。*R. Bredoux和E. Corvazier对本工作贡献相同。