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一种具有改进性质的新型甘氨酸光不稳定前体:用于甘氨酸受体化学动力学研究的工具。

A new photolabile precursor of glycine with improved properties: A tool for chemical kinetic investigations of the glycine receptor.

作者信息

Grewer C, Jäger J, Carpenter B K, Hess G P

机构信息

Department of Molecular Biology and Genetics, 217 Biotechnology Building, Cornell University, Ithaca, New York 14853-2703, USA.

出版信息

Biochemistry. 2000 Feb 29;39(8):2063-70. doi: 10.1021/bi9919652.

Abstract

The synthesis and characterization of a new photolabile precursor of glycine (caged glycine) is described. The alpha-carboxyl group of glycine is covalently coupled to the alpha-carboxy-2-nitrobenzyl (alphaCNB) protecting group. Photolysis of the caged glycine with UV light produces free glycine. At 308 nm, the compound photolyzes with a quantum yield of 0.38. The absorption spectrum and the pH dependence of a transient absorption produced after laser-flash illumination are typical for aci-nitro intermediates of alphaCNB-protected compounds. The time constant for the major component of the aci-nitro intermediate decay ( approximately 84% of the total aci-nitro absorbance) was determined to be 7 micros at physiological pH. A minor component ( approximately 16%) decays with a rate constant of 170 micros. The compound does not activate or inhibit the alpha(1)-homomeric glycine receptor transiently expressed in HEK293 cells. After photolysis with a 10 ns pulse of 325 nm laser light, the glycine released from the caged compound activates glycine-mediated whole-cell currents in the same cells. The rise of these currents can be measured in a time-resolved fashion and occurs on a millisecond to sub-millisecond time scale. It can be described with a single-exponential function over >85% of the total current. The rate constant of the current rise is about 2 orders of magnitude slower than the rate constant of caged glycine photolysis. Thermal hydrolysis of the alphaCNB-caged glycine takes place with a half-life of 15.6 h at physiological pH. The new caged glycine is the first in a series of photoprotected glycine derivatives that has the required properties for use with chemical kinetic methods for investigation of glycine-activated cell surface receptors. Photolysis is rapid and efficient with respect to the receptor reactions to be studied; hydrolysis in aqueous solution is sufficiently slow, and the compound is biologically inert. It will, therefore, be a useful tool for investigation of the processes leading to channel opening of glycine receptor channels and the effects of mutations of the glycine receptor and of inhibitors on these processes.

摘要

本文描述了一种新型甘氨酸光不稳定前体(笼形甘氨酸)的合成与表征。甘氨酸的α-羧基与α-羧基-2-硝基苄基(αCNB)保护基团共价偶联。用紫外光照射笼形甘氨酸会产生游离甘氨酸。在308nm波长下,该化合物的光解量子产率为0.38。激光闪光照射后产生的瞬态吸收的吸收光谱和pH依赖性是αCNB保护化合物的酸式硝基中间体的典型特征。在生理pH条件下,酸式硝基中间体衰变的主要成分(约占酸式硝基总吸光度的84%)的时间常数被确定为7微秒。次要成分(约16%)以170微秒的速率常数衰变。该化合物不会激活或抑制在HEK293细胞中瞬时表达的α(1)同聚甘氨酸受体。用325nm激光的10ns脉冲进行光解后,笼形化合物释放的甘氨酸会激活同一细胞中甘氨酸介导的全细胞电流。这些电流的上升可以通过时间分辨的方式进行测量,并且发生在毫秒到亚毫秒的时间尺度上。在总电流的>85%范围内,可以用单指数函数来描述。电流上升的速率常数比笼形甘氨酸光解的速率常数慢约2个数量级。在生理pH条件下,αCNB-笼形甘氨酸的热水解半衰期为15.6小时。这种新型笼形甘氨酸是一系列光保护甘氨酸衍生物中的首个,具有用于化学动力学方法研究甘氨酸激活的细胞表面受体所需的特性。就待研究的受体反应而言,光解快速且高效;在水溶液中的水解足够缓慢,并且该化合物具有生物惰性。因此,它将成为研究导致甘氨酸受体通道开放的过程以及甘氨酸受体突变和抑制剂对这些过程影响的有用工具。

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