Pesce M, Di Carlo A, De Felici M
Department of Public Health and Cell Biology, University of Rome Tor Vergata, Italy.
Mech Dev. 1997 Nov;68(1-2):37-44. doi: 10.1016/s0925-4773(97)00120-2.
The receptor encoded by the W (c-kit) locus is expressed on the membrane of mouse primordial germ cells, whereas its ligand termed stem cell factor (SCF), encoded by the Sl locus, is expressed on the membrane of somatic cells associated with both the primordial germ cell migratory pathways and homing sites. Using an in vitro short time assay which allows a quantitative measure of adhesion between cells, in the present paper we show that SCF/c-kit interaction can modulate primordial germ cell adhesion to somatic cells. We report that the adhesiveness of 11.5 dpc primordial germ cells to four types of somatic cells in culture (TM4 cells, STO fibroblasts, bone marrow stromal cells and gonadal somatic cells) is significantly reduced by antibodies directed against c-kit receptor or SCF, as well by soluble SCF. This SCF/c-kit mediated adhesion seems independent of SCF-induced tyrosine autophosphorylation of c-kit receptor. Moreover, primordial germ cells showed a poor ability to adhere to a bone marrow stromal cell line carrying the Sl(d) mutation (unable to synthesize membrane-bound SCF). This adhesiveness was not further impaired by anti-c-kit antibody. These results demonstrate that SCF/c-kit interaction contributes to the adhesion of primordial germ cells to somatic cells in culture and suggest that the role played by SCF in promoting survival, proliferation and migration of these cells in vitro and in vivo, demonstrated by several studies, might depend on the ability of the membrane-bound form of this cytokine to directly mediate primordial germ cell adhesion to the surrounding somatic cells.
由W(c-kit)基因座编码的受体在小鼠原始生殖细胞的膜上表达,而其配体干细胞因子(SCF)由Sl基因座编码,在与原始生殖细胞迁移途径和归巢位点相关的体细胞的膜上表达。在本文中,我们使用一种体外短期试验来定量测量细胞间的粘附,结果表明SCF/c-kit相互作用可调节原始生殖细胞与体细胞的粘附。我们报道,针对c-kit受体或SCF的抗体以及可溶性SCF均可显著降低11.5天胚胎龄的原始生殖细胞与四种培养的体细胞(TM4细胞、STO成纤维细胞、骨髓基质细胞和性腺体细胞)的粘附性。这种由SCF/c-kit介导的粘附似乎独立于SCF诱导的c-kit受体酪氨酸自磷酸化。此外,原始生殖细胞与携带Sl(d)突变(无法合成膜结合型SCF)的骨髓基质细胞系的粘附能力较差。抗c-kit抗体并未进一步削弱这种粘附性。这些结果表明,SCF/c-kit相互作用有助于原始生殖细胞在培养中与体细胞的粘附,并表明多项研究证明的SCF在体外和体内促进这些细胞存活、增殖和迁移中所起的作用,可能取决于这种细胞因子的膜结合形式直接介导原始生殖细胞与周围体细胞粘附的能力。