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小鼠中迁移的原始生殖细胞与细胞基质之间的相互作用。

Interactions between migratory primordial germ cells and cellular substrates in the mouse.

作者信息

De Felici M, Pesce M

机构信息

Dipartimento di Sanità Pubblica e Biologia Cellulare, Università degli Studi di Roma Tor Vergata, Roma, Italy.

出版信息

Ciba Found Symp. 1994;182:140-50; discussion 150-3. doi: 10.1002/9780470514573.ch8.

Abstract

In previous in vitro studies we found that contact between mouse primordial germ cells and other cell types (neighbouring somatic cells or established TM4 or STO cell lines) is crucial for supporting primordial germ cell survival and proliferation and for activating their motility. We have studied primordial germ cell adhesion to different cell monolayers (STO, TM4, COS and F9 cells) as an in vitro model for interactions between primordial germ cells and cellular substrates. The results suggest that these cell interactions are mediated by multiple mechanisms involving Steel factor and its receptor encoded by c-kit, carbohydrates and possibly other unknown factors. We find that Steel factor and leukaemia inhibitory factor are survival rather than proliferation factors for primordial germ cells. Both molecules prevent primordial germ cell death in culture by suppressing apoptosis. Morphological and molecular features of primordial germ cell apoptosis in vitro are reported. Activation of protein kinase C does not promote primordial germ cell proliferation, but compounds known to enhance intracellular levels of cAMP (i.e. dibutyryl cAMP and forskolin) markedly stimulate primordial germ cells to proliferate in culture. We have preliminary results indicating that neuropeptides PACAP-27 and PACAP-28 are possible physiological activators of adenylate cyclase in primordial germ cells.

摘要

在之前的体外研究中,我们发现小鼠原始生殖细胞与其他细胞类型(相邻的体细胞或已建立的TM4或STO细胞系)之间的接触对于支持原始生殖细胞的存活、增殖以及激活其运动性至关重要。我们研究了原始生殖细胞与不同细胞单层(STO、TM4、COS和F9细胞)的黏附,以此作为原始生殖细胞与细胞底物之间相互作用的体外模型。结果表明,这些细胞间相互作用是由多种机制介导的,涉及Steel因子及其由c-kit编码的受体、碳水化合物以及可能的其他未知因子。我们发现Steel因子和白血病抑制因子是原始生殖细胞的存活因子而非增殖因子。这两种分子通过抑制凋亡来防止培养中的原始生殖细胞死亡。本文报道了体外原始生殖细胞凋亡的形态学和分子特征。蛋白激酶C的激活并不能促进原始生殖细胞的增殖,但已知能提高细胞内cAMP水平的化合物(即二丁酰cAMP和福斯可林)能显著刺激原始生殖细胞在培养中增殖。我们有初步结果表明,神经肽PACAP-27和PACAP-28可能是原始生殖细胞中腺苷酸环化酶的生理性激活剂。

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