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对缺血后再灌注后脑腺苷酸环化酶损伤分子位点的进一步探究。

Further probes into the molecular sites of damage to cerebral adenylate cyclase following postischemic reperfusion.

作者信息

Palmer G C, Jones D J, Palmer S J, Christie-Pope B C, Poulakos L

出版信息

Neurochem Pathol. 1986 Aug;5(1):1-23. doi: 10.1007/BF03028033.

Abstract

A variety of pharmacological agents were used as experimental probes to determine with greater precision the site(s) of damage to cerebral adenylate cyclase as a consequence of postischemic reperfusion in the gerbil. A paradigm of 60-min bilateral ischemia followed by 40-min reperfusion results in a decreased sensitivity of the catalytic site of adenylate cyclase to Mn2+. Likewise, the GTP-transducer site (guanine nucleotide regulatory or G protein) revealed depressed responses to GTP in the absence or presence of norepinephrine, dopamine agonists, substance P, yohimbine, and cholera and pertussis toxins. Moreover, a crude preparation of GTPase disclosed that damage elicited by postischemic reperfusion was directed to the higher-affinity form of this enzyme, which is associated with the overall function of the guanine nucleotide regulatory protein. Injury to adenylate cyclase was unrelated either to the ability of adrenergic ligands to bind to associated receptor sites or to the capacity of the brain to generate visual evoked potentials in response to visual stimuli.

摘要

使用了多种药理试剂作为实验探针,以更精确地确定沙鼠缺血后再灌注导致脑腺苷酸环化酶损伤的部位。60分钟双侧缺血后再灌注40分钟的模式会导致腺苷酸环化酶催化位点对Mn2+的敏感性降低。同样,GTP转导位点(鸟嘌呤核苷酸调节或G蛋白)在不存在或存在去甲肾上腺素、多巴胺激动剂、P物质、育亨宾以及霍乱毒素和百日咳毒素的情况下,对GTP的反应均显示出降低。此外,一种GTP酶的粗制品表明,缺血后再灌注引起的损伤针对的是该酶的高亲和力形式,它与鸟嘌呤核苷酸调节蛋白的整体功能相关。腺苷酸环化酶的损伤与肾上腺素能配体结合相关受体位点的能力无关,也与大脑对视觉刺激产生视觉诱发电位的能力无关。

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