Johansen L, Roberg B, Kvamme E
Neurochem Res. 1987 Feb;12(2):135-40. doi: 10.1007/BF00979529.
[14C]Glutamine uptake in a crude synaptosomal (P2) fraction, (representing the sum of [14C]glutamine accumulated and [14C]glutamate formed by hydrolysis), is distinct from glutamate uptake. Glutamine uptake is Na+-independent and unaffected by the Na+-K+-ATPase inhibitor ouabain, whereas glutamate uptake is Na+-dependent and inhibited by ouabain. The uptake of both glutamine and glutamate is unaffected by the gamma-glutamyltransferase inhibitor, Acivicin. This indicates that glutamine uptake is not mediated by a carrier, as distinct from that of glutamate, and also not linked to gamma-glutamyl-transferase. Na+ affects the distribution of glutamine-derived glutamate by increasing the synaptosomal content and reducing that of the medium. When glutamate release from synaptosomes preloaded with [14C]glutamate is measured by superfusion technique in order to prevent reuptake, Na+ has been found to inhibit release in a non-depolarizing medium (Ringer buffer with no Ca2+) of the [14C]glutamate as well as of endogenous glutamate. The specific activity of the [14C]glutamine-derived glutamate in the incubation medium is much higher than that in the synaptosomes, indicating that there exists a readily releasable pool of newly formed glutamate in addition to another pool. The latter glutamate pool is partially reduced by Na+.
粗制突触体(P2)组分中[14C]谷氨酰胺的摄取(代表积累的[14C]谷氨酰胺和水解形成的[14C]谷氨酸的总和)与谷氨酸摄取不同。谷氨酰胺摄取不依赖于Na +,且不受Na + -K + -ATP酶抑制剂哇巴因的影响,而谷氨酸摄取依赖于Na +且受哇巴因抑制。谷氨酰胺和谷氨酸的摄取均不受γ-谷氨酰转移酶抑制剂阿西维辛的影响。这表明谷氨酰胺摄取不是由载体介导的,这与谷氨酸不同,并且也与γ-谷氨酰转移酶无关。Na +通过增加突触体含量并减少培养基中的含量来影响谷氨酰胺衍生的谷氨酸的分布。当通过灌注技术测量预先加载[14C]谷氨酸的突触体中谷氨酸的释放以防止再摄取时,已发现Na +在非去极化培养基(不含Ca2 +的林格缓冲液)中抑制[14C]谷氨酸以及内源性谷氨酸的释放。孵育培养基中[14C]谷氨酰胺衍生的谷氨酸的比活性远高于突触体中的比活性,表明除了另一个池之外,还存在易于释放的新形成的谷氨酸池。后一个谷氨酸池被Na +部分减少。