Van den Bosch L, De Smedt H, Borghgraef R
Laboratorium voor Fysiologie, Katholieke Universiteit Leuven, Belgium.
J Cell Physiol. 1989 Dec;141(3):483-9. doi: 10.1002/jcp.1041410306.
Two clones (LD3 and LC3) were isolated from the established renal cell line LLC-PK1. They differed with respect to the development of the Na+-dependent alpha-methyl-D-glucoside (AMG) uptake. The higher uptake capacity in LD3 as compared to LC3 was owing to the expression of a higher number of carrier molecules as was shown by the specific phlorizin binding. The intracellular cyclic AMP level, the D-glucose concentration in the growth medium and the cell density could be excluded as the causes of the difference between both clones. We found that the faster development of the Na+-dependent hexose carrier in LD3 was parallelled by a faster expression of trehalase in this clone. This suggests that the expression of both apical proteins is correlated. From the growth curves it was concluded that renewal of the undifferentiated population was roughly the same in both clones. The recruitment of cells from the undifferentiated to the growth arrested state seems also very similar as was deduced from the development of tight junctions and from the down-regulation of the alpha-methylaminoisobutyric acid (meAIB) uptake. The start of differentiation was identical as was shown by the similar rate of expression found for gamma-glutamyl transferase. The difference between both clones is most likely situated at the traverse to a fully differentiated cell. This process takes more time in LC3 than in LD3. Also the fully differentiated state seemed to be different in both clones. We conclude that the pattern of differentiated characteristics found in both clones is different and a model incorporating these differences is presented.
从已建立的肾细胞系LLC-PK1中分离出两个克隆(LD3和LC3)。它们在钠依赖性α-甲基-D-葡萄糖苷(AMG)摄取的发展方面存在差异。与LC3相比,LD3具有更高的摄取能力,这是由于特异性根皮苷结合显示其表达了更多数量的载体分子。细胞内的环磷酸腺苷水平、生长培养基中的D-葡萄糖浓度和细胞密度可排除为两个克隆之间差异的原因。我们发现,LD3中钠依赖性己糖载体的更快发展与该克隆中海藻糖酶的更快表达平行。这表明两种顶端蛋白的表达是相关的。从生长曲线可以得出结论,两个克隆中未分化群体的更新大致相同。从未分化状态到生长停滞状态的细胞募集似乎也非常相似,这是从紧密连接的发展和α-甲基氨基异丁酸(meAIB)摄取的下调推断出来的。分化的开始是相同的,γ-谷氨酰转移酶的相似表达速率表明了这一点。两个克隆之间的差异很可能位于向完全分化细胞的转变过程中。这个过程在LC3中比在LD3中花费更多时间。而且两个克隆中完全分化的状态似乎也不同。我们得出结论,两个克隆中发现的分化特征模式不同,并提出了一个包含这些差异的模型。