Wieboldt R, Gee K R, Niu L, Ramesh D, Carpenter B K, Hess G P
Section of Biochemistry, Molecular and Cell Biology, Cornell University, Ithaca, NY 14853-2703.
Proc Natl Acad Sci U S A. 1994 Sep 13;91(19):8752-6. doi: 10.1073/pnas.91.19.8752.
Newly synthesized photolabile derivatives of glutamate, caged glutamate, that release free glutamate on a microsecond time scale after a pulse of UV laser light are described. 2-Nitrobenzyl derivatives were attached to the amino or carboxyl groups of glutamate. Substitution with a -CO2- group at the benzylic carbon accelerates the photolysis reaction when compared to -H and -CH3 substituents. gamma-O-(alpha-Carboxy-2-nitrobenzyl)glutamate is stable at neutral pH. In 100 mM phosphate buffer at pH 7.0, the compound is photolyzed at 308 nm with a quantum product yield of 0.14. The half-life of the major component of the photolytic reaction, as judged by the transient absorbance change at 430 nm, is 21 microseconds (approximately 90%); the half-life of a minor component (approximately 10%) is 0.2 ms. The amino-linked derivatives have half-lives in the millisecond region and a 4-fold lower quantum yield. The potential of the newly synthesized compound for use in rapid chemical kinetic investigations of glutamate receptors is demonstrated. (i) The caged glutamate at 1 mM concentration does not desensitize glutamate receptors in rat hippocampal neurons. (ii) Caged glutamate (1 mM) does not inhibit activation of the receptors by 50 microM glutamate. (iii) Photolysis of the compound induces rapid onset of transmembrane currents in rat hippocampal neurons.
本文描述了新合成的谷氨酸光不稳定衍生物——笼形谷氨酸,其在紫外激光脉冲后微秒时间尺度内释放游离谷氨酸。2-硝基苄基衍生物连接在谷氨酸的氨基或羧基上。与-H和-CH3取代基相比,苄基碳上的-CO2-基团取代可加速光解反应。γ-O-(α-羧基-2-硝基苄基)谷氨酸在中性pH下稳定。在pH 7.0的100 mM磷酸盐缓冲液中,该化合物在308 nm处光解,量子产率为0.14。根据430 nm处的瞬态吸光度变化判断,光解反应主要成分的半衰期为21微秒(约90%);次要成分(约10%)的半衰期为0.2毫秒。氨基连接的衍生物半衰期在毫秒范围内,量子产率低4倍。证明了新合成化合物用于谷氨酸受体快速化学动力学研究的潜力。(i) 1 mM浓度的笼形谷氨酸不会使大鼠海马神经元中的谷氨酸受体脱敏。(ii) 笼形谷氨酸(1 mM)不会抑制50 microM谷氨酸对受体的激活。(iii) 该化合物的光解在大鼠海马神经元中诱导跨膜电流快速产生。