Isfort R J, Cody D B, Asquith T N, LeBoeuf R A
Human and Environmental Safety Division, Procter & Gamble Company, Miami Valley Laboratories, Cincinnati, Ohio 45239.
In Vitro Cell Dev Biol. 1992 Sep-Oct;28A(9-10):635-42. doi: 10.1007/BF02631039.
We have investigated the molecular phenotypic differences between Syrian hamster embryo (SHE) cells cultured at pH 6.7 or 7.3. Multiple pH-sensitive phenotypic differences were noted including changes in cellular morphology, a unique charge differential in a major cellular protein, nine uniquely expressed proteins, two unique phosphoserine/threonine phosphoproteins, one unique phosphotyrosine phosphoprotein, and the pH dependent mRNA level of a gap junctional gene (connexin 43). These differences, combined with previously described pH-specific differences (differential transformation rates and gap junctional communication), illustrate that culturing SHE cells in media that differ by 0.6 pH units (0.3 units on either side of pH 7.0) can have a profound influence on the cellular phenotype.
我们研究了在pH 6.7或7.3条件下培养的叙利亚仓鼠胚胎(SHE)细胞之间的分子表型差异。注意到多种pH敏感的表型差异,包括细胞形态的变化、一种主要细胞蛋白中独特的电荷差异、九种独特表达的蛋白、两种独特的磷酸丝氨酸/苏氨酸磷酸化蛋白、一种独特的磷酸酪氨酸磷酸化蛋白,以及间隙连接基因(连接蛋白43)的pH依赖性mRNA水平。这些差异,与先前描述的pH特异性差异(差异转化率和间隙连接通讯)相结合,表明在相差0.6个pH单位(pH 7.0两侧各0.3个单位)的培养基中培养SHE细胞会对细胞表型产生深远影响。