Cieplinski W, Tomicic T, Hajjar J J
Cancer Biochem Biophys. 1983;6(3):143-7.
Cell membrane function during hybridization was assessed by examining the accumulation of four representative amino acids and a sugar in mouse-human hybrid cells, parental mouse cells and human cells. Qualitatively, accumulation in the hybrids was found to resemble the accumulation in parental mouse more than the human cells. In particular, the steady-state uptake of leucine and glycine in hybrids was similar to that in parental mouse cells and different than that observed in the human cells. The findings suggest that hybrids retain transport properties of mouse rather than human cells. These results are in keeping with our previous observation that the human mouse hybrids conserve most of the mouse chromosomes and the membrane proteins of the hybrids are very likely of mouse parental origin.
通过检测四种代表性氨基酸和一种糖类在小鼠-人杂交细胞、亲代小鼠细胞和人细胞中的积累情况,评估杂交过程中的细胞膜功能。定性地说,发现杂交细胞中的积累情况更类似于亲代小鼠细胞而非人细胞中的积累情况。特别是,杂交细胞中亮氨酸和甘氨酸的稳态摄取与亲代小鼠细胞中的相似,与人细胞中观察到的不同。这些发现表明杂交细胞保留了小鼠细胞而非人细胞的转运特性。这些结果与我们之前的观察结果一致,即人-小鼠杂交细胞保留了大部分小鼠染色体,且杂交细胞的膜蛋白很可能源自小鼠亲代。