Plagemann P G, Aran J M, Woffendin C
Department of Microbiology, Medical School, University of Minnesota, Minneapolis 55455.
Biochim Biophys Acta. 1990 Feb 16;1022(1):93-102. doi: 10.1016/0005-2736(90)90404-c.
Na(+)-dependent, active and Na(+)-independent facilitated nucleoside transport were characterized in mouse spleen cells using rapid kinetic techniques and formycin B, a metabolically inert analog of inosine, as substrate. The Michaelis-Menten constants for formycin B transport by the two transporters were about 30 and 400 microM, respectively. The first-order rate constant for Na(+)-dependent transport was about 4-times higher than that for facilitated formycin B transport. The Na(+)-dependent carrier is specific for uridine and purine nucleosides and accumulates formycin B concentratively in an unmodified form. Concentrative accumulation was inhibited by ATP depletion and gramicidin and ouabain treatment of the cells. Our data indicate a single Na(+)-binding site on the Na(+)-dependent nucleoside carrier and a Michaelis-Menten constant for Na+ of about 10 mM. This transporter was not significantly inhibited by dipyridamole and nitrobenzylthioinosine, inhibitors of the facilitated transporter. The Na(+)-independent, facilitated nucleoside transporter of spleen cells exhibits properties comparable to those of the carriers present in mammalian cells in general. The B lymphocytes remaining after depletion of spleen cell populations of T lymphocytes by incubation with a combination of T-cell specific monoclonal antibodies plus complement exhibited about the same activities of active and facilitated nucleoside transport as the original suspension.
利用快速动力学技术,以肌苷的代谢惰性类似物呋啶霉素B为底物,对小鼠脾细胞中Na⁺依赖性主动核苷转运和Na⁺非依赖性易化核苷转运进行了表征。两种转运体转运呋啶霉素B的米氏常数分别约为30和400μM。Na⁺依赖性转运的一级速率常数约比易化呋啶霉素B转运的一级速率常数高4倍。Na⁺依赖性载体对尿苷和嘌呤核苷具有特异性,并以未修饰的形式浓缩积累呋啶霉素B。ATP耗竭以及用短杆菌肽和哇巴因处理细胞可抑制浓缩积累。我们的数据表明,Na⁺依赖性核苷载体上有一个单一的Na⁺结合位点,Na⁺的米氏常数约为10 mM。该转运体未被易化转运体抑制剂双嘧达莫和硝基苄硫基肌苷显著抑制。脾细胞的Na⁺非依赖性易化核苷转运体表现出的性质与一般哺乳动物细胞中存在的载体的性质相当。用T细胞特异性单克隆抗体加补体孵育耗尽T淋巴细胞的脾细胞群体后剩余的B淋巴细胞,其主动核苷转运和易化核苷转运活性与原始悬浮液大致相同。