Molecular Genetics of Morphogenesis Unit, Department of Developmental Biology, URA CNRS 2578, Institut Pasteur, 25 rue du Dr Roux, 75015 Paris, France.
J Cell Sci. 2011 Dec 1;124(Pt 23):3980-8. doi: 10.1242/jcs.085373. Epub 2011 Dec 8.
We report expression of Pax3, an important regulator of skeletal muscle stem cell behaviour, in the brachial and femoral arteries of adult mice. In these contractile arteries of the limb, but not in the elastic arteries of the trunk, bands of GFP-positive cells were observed in Pax3(GFP/+) mice. Histological and biochemical examination of the vessels, together with clonal analysis after purification of Pax3-GFP-positive cells by flow cytometry, established their vascular smooth muscle identity. These blood-vessel-derived cells do not respond to inducers of other mesodermal cell types, such as bone, however, they can contribute to muscle fibre formation when co-cultured with skeletal muscle cells. This myogenic conversion depends on the expression of Pax3, but is rare and non-cell autonomous as it requires cell fusion. Myocardin, which promotes acquisition of a mature smooth muscle phenotype in these Pax3-GFP-positive cells, antagonises their potential for skeletal muscle differentiation. Genetic manipulation shows that myocardin is, however, positively regulated by Pax3, unlike genes for other myocardin-related factors, MRTFA, MRTFB or SRF. Expression of Pax3 overlaps with that reported for Msx2, which is required for smooth muscle differentiation of blood vessel-derived multipotent mesoangioblasts. These observations are discussed with respect to the origin and function of Pax3-expressing cells in blood vessels, and more general questions of cell fate determination and adult cell plasticity and reprogramming.
我们报告了 Pax3 的表达,Pax3 是骨骼肌干细胞行为的重要调节因子,存在于成年小鼠的肱动脉和股动脉中。在这些肢体的收缩性动脉中,但不在躯干的弹性动脉中,在 Pax3(GFP/+) 小鼠中观察到 GFP 阳性细胞带。对血管的组织学和生化检查,以及通过流式细胞术对 Pax3-GFP 阳性细胞进行纯化后的克隆分析,确立了它们的血管平滑肌身份。这些血管衍生细胞不会对其他中胚层细胞类型(如骨骼)的诱导物产生反应,然而,当与骨骼肌细胞共培养时,它们可以有助于肌纤维形成。这种成肌转化取决于 Pax3 的表达,但由于需要细胞融合,因此很少且非细胞自主。肌球蛋白,它促进这些 Pax3-GFP 阳性细胞获得成熟的平滑肌表型,拮抗其向骨骼肌分化的潜力。遗传操作表明,肌球蛋白与其他肌球蛋白相关因子(MRTFA、MRTFB 或 SRF)不同,它受 Pax3 的正调控。Pax3 的表达与报告的 Msx2 重叠,Msx2 是血管衍生多能中膜成血管细胞平滑肌分化所必需的。这些观察结果与血管中表达 Pax3 的细胞的起源和功能以及更普遍的细胞命运决定和成年细胞可塑性和重编程问题进行了讨论。