Department of Anesthesia, Perioperative and Pain Medicine, Brigham and Women's Hospital , 75 Francis Street, Boston, MA 02115 , USA.
Biol Open. 2012 Sep 15;1(9):839-47. doi: 10.1242/bio.20121222. Epub 2012 Jul 9.
A myosphere cell is a unique type of muscle stem cell that is able to maintain its pre-myogenic state in culture over time. These cells are propagated in culture as free-floating, non-adherent spheres. We believe that the 3-dimensional adhesive cell-cell interactions involved in maintaining the sphere-like myosphere structures are also involved in maintaining their longevity in culture. We found that Sca-1, which is highly expressed by myosphere cells, plays a role in the growth and the formation of the myospheres. In comparing adhesion molecules expressed by 3-dimensionally grown myosphere cells to those expressed by 2-dimensionally grown primary myoblasts, we found that there was a distinct difference in the expression of β3 integrin. Upon further investigation we discovered that there is an adhesive interaction between Sca-1(+) cells and αVβ3 integrin. Here we show that Sca-1(+) cells (myosphere cells and NIH3T3 cells) adhere to αVβ3 integrin and that Sca-1(-) cells (primary myoblasts) do not adhere. The interaction between Sca-1 and αVβ3 integrin was confirmed using antibody blocking, shRNA knockdown of Sca-1 in Sca-1(+) cells, and by expressing Sca-1 cDNA in Sca-1(-) cells, which demonstrated that the level of adhesion of these cells to αVβ3 integrin was dependent on the presence of Sca-1. Additionally, we found that the co-expression of Sca-1 and β3 resulted in significantly greater adhesion of Sca-1(+) cells to αVβ3 integrin. In conclusion, our data indicate that Sca-1 is involved in maintaining the 3-dimensional myosphere cell-cell contacts and that Sca-1 is involved in the binding of cells to αVβ3 integrin.
肌球细胞是一种独特的肌肉干细胞,能够在培养过程中随着时间的推移维持其前肌肉生成状态。这些细胞在培养中作为自由漂浮的非贴壁球体进行繁殖。我们认为,维持球体样肌球结构所需的 3 维细胞-细胞黏附相互作用也参与维持它们在培养中的寿命。我们发现,高度表达于肌球细胞的 Sca-1 在球体的生长和形成中发挥作用。在比较 3 维培养的肌球细胞表达的黏附分子与 2 维培养的原代成肌细胞表达的黏附分子时,我们发现β3 整联蛋白的表达存在明显差异。进一步研究发现,Sca-1(+)细胞与αVβ3 整联蛋白之间存在黏附相互作用。在这里,我们显示 Sca-1(+)细胞(肌球细胞和 NIH3T3 细胞)黏附于αVβ3 整联蛋白,而 Sca-1(-)细胞(原代成肌细胞)不黏附。使用抗体阻断、Sca-1(+)细胞中 Sca-1 的 shRNA 敲低以及在 Sca-1(-)细胞中表达 Sca-1 cDNA 证实了 Sca-1 与αVβ3 整联蛋白之间的相互作用,这表明这些细胞与αVβ3 整联蛋白的黏附水平取决于 Sca-1 的存在。此外,我们发现 Sca-1 和β3 的共表达导致 Sca-1(+)细胞与αVβ3 整联蛋白的黏附显著增加。总之,我们的数据表明 Sca-1 参与维持 3 维肌球细胞-细胞接触,并且 Sca-1 参与细胞与αVβ3 整联蛋白的结合。