Biomedicum Stem Cell Center, University of Helsinki, Helsinki, Finland.
Hospital for Children and Adolescents, University of Helsinki, Helsinki, Finland.
J Cell Mol Med. 2009 Aug;13(8B):2622-2633. doi: 10.1111/j.1582-4934.2008.00643.x. Epub 2008 Dec 29.
To reveal the functional intrinsic niche of human embryonic stem cells (hESC) we examined the production of basement membrane (BM) proteins and the presence of their receptors in feeder-free cell culture conditions. In addition, we investigated binding of hESCs to purified human BM proteins and identified the receptors mediating these contacts. Also, we tested whether purified human laminin (Lm) isoforms have a role in hESC self-renewal and growth in short-term cultures. The results show that hESCs synthesize Lm alpha(1) and Lm alpha(5) chains together with Lm beta(1) and gamma(1) chains suggesting the production of Lms-111 and -511 into the culture medium and deposits on cells. hESCs contain functionally important integrin (Int) subunits, Int beta(1), alpha(3), alpha(6), alpha(5), beta(5) and alpha(V), as well as the Lm alpha(5) receptor, Lutheran (Lu) glycoprotein and its truncated form, basal cell adhesion molecule (B-CAM). In cell adhesion experiments, Int beta(1) was crucial for adhesion to most of the purified human BM proteins. Lu/B-CAM mediated adhesion to Lm-511 together with Int alpha(3)beta(1), and was essential for the adhesion of hESCs to embryonic feeder cells. Adhesion to Lm-411 was mediated by Int alpha(6)beta(1). Lm-511 supported hESC growth in defined medium equally well as Matrigel. These results provide consequential information of the biological role of BM in hESCs, warranting further investigation of BM biology of human pluripotent stem cells.
为了揭示人类胚胎干细胞(hESC)的功能固有生态位,我们研究了在无饲养细胞培养条件下基底膜(BM)蛋白的产生及其受体的存在。此外,我们还研究了 hESC 与纯化的人 BM 蛋白的结合,并鉴定了介导这些接触的受体。我们还测试了纯化的人层粘连蛋白(Lm)同工型是否在 hESC 自我更新和短期培养中的生长中起作用。结果表明,hESC 合成 Lm alpha(1)和 Lm alpha(5)链以及 Lm beta(1)和 gamma(1)链,表明 Lms-111 和 -511 被分泌到培养基中并沉积在细胞上。hESC 含有功能重要的整合素(Int)亚基,包括 Int beta(1)、alpha(3)、alpha(6)、alpha(5)、beta(5)和 alpha(V),以及 Lm alpha(5)受体,Lutheran(Lu)糖蛋白及其截短形式,基底细胞黏附分子(B-CAM)。在细胞黏附实验中,Int beta(1)对于与大多数纯化的人 BM 蛋白的黏附至关重要。Lu/B-CAM 与 Int alpha(3)beta(1)一起介导对 Lm-511 的黏附,并且对于 hESC 对胚胎饲养细胞的黏附是必需的。Int alpha(6)beta(1)介导对 Lm-411 的黏附。Lm-511 与 Matrigel 一样,能很好地支持 hESC 在定义培养基中的生长。这些结果提供了 BM 在 hESC 中的生物学作用的重要信息,值得进一步研究人类多能干细胞的 BM 生物学。