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大鼠下丘脑高亲和力和低亲和力α-银环蛇毒素结合位点的特征与分布

Characteristics and distribution of high- and low-affinity alpha bungarotoxin binding sites in the rat hypothalamus.

作者信息

Meeker R B, Michels K M, Libber M T, Hayward J N

出版信息

J Neurosci. 1986 Jul;6(7):1866-75. doi: 10.1523/JNEUROSCI.06-07-01866.1986.

Abstract

When binding of 125I-alpha bungarotoxin (125I-alpha BTX) to hypothalamic membranes is observed over a wide range of concentrations, 3 binding sites can be identified, with estimated equilibrium dissociation constants (Kds) of 4.1 X 10(-11) M, 6.2 X 10(-10) M, and 9.1 X 10(-7) M for high-, low-, and very-low-affinity interactions, respectively. The densities of the high- and low-affinity sites were similar at 14-21 fmol/mg protein, whereas the very-low-affinity site had approximately 1000 X greater capacity. Association and dissociation kinetics predicted a biphasic binding reaction, with association rate constants of 1.38 X 10(8) M-1 min-1 and 7.53 X 10(7) M-1 min-1 and dissociation rate constants of 5.23 X 10(-3) min-1 and 1.80 X 10(-3) min-1. The presence of Na+ inhibited the binding of 125I-alpha BTX with a half-maximally effective concentration of 22 mM. This decrease in binding was associated with the observation of a single binding site with a Kd of 4.3 X 10(-10) M and a density of 12.1 fmol/mg protein. In competition binding experiments, alpha BTX, curare, nicotine, and quinacrine were the most potent competitors. Acetylcholine competed with 125I-alpha BTX binding at 2 sites with estimated affinities of 3.6 X 10(-8) and 7.4 X 10(-5) M. In the rostral hypothalamus, high-affinity binding of 125I-alpha BTX was localized to the region of the supraoptic nucleus, paraventricular nucleus, suprachiasmatic nucleus, and the nucleus circularis complex. Within magnocellular regions, binding was closely associated with neurophysin-immunoreactive neurons and processes, while in the region of the suprachiasmatic nucleus, the binding was in a perinuclear region surrounding parvocellular neurophysin-immunoreactive neurons.

摘要

当在很宽的浓度范围内观察125I-α银环蛇毒素(125I-αBTX)与下丘脑膜的结合时,可以识别出3个结合位点,高、低和极低亲和力相互作用的估计平衡解离常数(Kds)分别为4.1×10⁻¹¹M、6.2×10⁻¹⁰M和9.1×10⁻⁷M。高亲和力和低亲和力位点的密度相似,为14 - 21 fmol/mg蛋白质,而极低亲和力位点的容量大约大1000倍。结合和解离动力学预测了一个双相结合反应,结合速率常数分别为1.38×10⁸M⁻¹min⁻¹和7.53×10⁷M⁻¹min⁻¹,解离速率常数分别为5.23×10⁻³min⁻¹和1.80×10⁻³min⁻¹。Na⁺的存在抑制了125I-αBTX的结合,半数有效浓度为22 mM。这种结合的减少与观察到一个Kd为4.3×10⁻¹⁰M且密度为12.1 fmol/mg蛋白质的单一结合位点有关。在竞争结合实验中,αBTX、箭毒、尼古丁和奎纳克林是最有效的竞争者。乙酰胆碱在2个位点与125I-αBTX结合竞争,估计亲和力分别为3.6×10⁻⁸和7.4×10⁻⁵M。在 Rostral下丘脑,125I-αBTX的高亲和力结合定位于视上核、室旁核、视交叉上核和环状核复合体区域。在大细胞区域内,结合与神经垂体素免疫反应性神经元和突起密切相关,而在视交叉上核区域,结合位于小细胞神经垂体素免疫反应性神经元周围的核周区域。

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Studies on 125I-alpha bungarotoxin binding sites in rat brain.
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