Makan N R
J Cell Physiol. 1979 Dec;101(3):481-92. doi: 10.1002/jcp.1041010314.
Addition of ATP to medium surrounding intact, transformed 3T3 cells activates the formation of aqueous channels in the plasma membrane. This results in efflux of nucleotide pools and ions and entry into the cytosol of charged, phosphorylated species. In such permeabilized cells, glycolysis is totally dependent on the external addition of glucose, inorganic phosphate, ADP, K+, Mg2+ and NAD+ which restore lactic acid formation to levels found in untreated cells. As expected, such reconstitution of glycolytic activity is found to restore intracellular ATP levels. This is accompanied by sealing of the membrane channels so that efflux of nucleotide pools ceases. Pyruvate, a substrate for mitochondrial ATP synthesis, when provided along with ADP and inorganic phosphate also produces sealing of the membrane channels. On the other hand, reactivation of pentose phosphate shunt activity, which does not lead to ATP synthesis, does not induce restoration of the membrane permeability barrier. Furthermore, compounds which lower the internal ATP pool prevent sealing, and also render the plasma membrane more sensitive to external ATP (Rozengurt and Heppel, '79). Sealing of aqueous channels following restoration of the internal ATP pool is associated with phosphorylation of the inner membrane surface, and is unaffected by inhibitors of protein synthesis, microfilament or microtubular assembly. These results indicate the probable role of intracellular ATP in the restoration and/or maintenance of an active membrane barrier against efflux of small molecules and ions in transformed 3T3 cells.
向完整的、经转化的3T3细胞周围的培养基中添加ATP,可激活质膜上水通道的形成。这导致核苷酸池和离子外流,并使带电荷的磷酸化物质进入细胞质。在这种通透性细胞中,糖酵解完全依赖于外部添加葡萄糖、无机磷酸盐、ADP、K⁺、Mg²⁺和NAD⁺,这些物质可将乳酸生成恢复到未处理细胞中的水平。正如预期的那样,发现这种糖酵解活性的重建可恢复细胞内ATP水平。与此同时,膜通道会封闭,从而使核苷酸池停止外流。丙酮酸是线粒体ATP合成的底物,当与ADP和无机磷酸盐一起提供时,也会导致膜通道封闭。另一方面,磷酸戊糖途径活性的重新激活不会导致ATP合成,也不会诱导膜通透性屏障的恢复。此外,降低细胞内ATP池的化合物会阻止封闭,还会使质膜对外部ATP更敏感(罗曾古特和赫佩尔,1979年)。细胞内ATP池恢复后水通道的封闭与内膜表面的磷酸化有关,并且不受蛋白质合成抑制剂、微丝或微管组装抑制剂的影响。这些结果表明细胞内ATP在恢复和/或维持对转化的3T3细胞中小分子和离子外流的活性膜屏障方面可能发挥的作用。