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与多刺龙虾嗅觉器官相关的外核苷酸酶活性

Ectonucleotidase activities associated with the olfactory organ of the spiny lobster.

作者信息

Trapido-Rosenthal H G, Carr W E, Gleeson R A

机构信息

Whitney Laboratory, University of Florida, St. Augustine 32086.

出版信息

J Neurochem. 1990 Jul;55(1):88-96. doi: 10.1111/j.1471-4159.1990.tb08825.x.

Abstract

The olfactory system of the Florida spiny lobster, Panulirus argus, has olfactory receptors that are excited by the purine nucleotides AMP, ADP, and ATP. These receptors reside on chemosensory neurons that are contained within aesthetasc sensilla on the lateral filaments of the antennules. Also associated with the lobster's olfactory system are ectonucleotidase activities that dephosphorylate excitatory nucleotides, resulting in the production of the nonstimulatory nucleoside adenosine. Our studies of the 5'-ectonucleotidase, ecto-ADPase, and ecto-ATPase activities of this olfactory system showed that each activity was characterized by Michaelis-Menten kinetics; Michaelis constants ranged from 6.9 to 33.5 microM, and maximum velocities ranged from 2.5 to 28.8 fmol/sensillum/s. Evidence that AMP dephosphorylation may serve as an inactivation process was shown by the close correlation between the kinetics of 5'-ectonucleotidase activity and the periodicity of olfactory sampling. Decreased magnesium ion concentration or increased calcium ion concentration resulted in increased ecto-ATPase activity; this activity was insensitive to vanadate ion. Ectonucleotidase activities may have multiple effects on the detection of exogenous nucleotides by a chemosensory system. These effects can be either direct, such as the conversion of an odorant to an inactive compound, or indirect, such as the conversion of an odorant to another compound that can activate or inhibit either receptors or enzymes associated with the system.

摘要

佛罗里达刺龙虾(Panulirus argus)的嗅觉系统具有嗅觉受体,这些受体可被嘌呤核苷酸AMP、ADP和ATP激活。这些受体位于化学感受神经元上,而这些神经元包含在触角侧丝上的嗅觉感觉器内。与龙虾嗅觉系统相关的还有外核苷酸酶活性,它可使兴奋性核苷酸去磷酸化,从而产生无刺激作用的核苷腺苷。我们对该嗅觉系统的5'-外核苷酸酶、外ADP酶和外ATP酶活性的研究表明,每种活性都具有米氏动力学特征;米氏常数范围为6.9至33.5微摩尔,最大速度范围为2.5至28.8飞摩尔/感觉器/秒。5'-外核苷酸酶活性的动力学与嗅觉采样的周期性之间的密切相关性表明,AMP去磷酸化可能作为一种失活过程。镁离子浓度降低或钙离子浓度升高会导致外ATP酶活性增加;该活性对钒酸盐离子不敏感。外核苷酸酶活性可能对化学感受系统检测外源核苷酸有多种影响。这些影响可以是直接的,例如将气味剂转化为无活性化合物,也可以是间接的,例如将气味剂转化为另一种可以激活或抑制与该系统相关的受体或酶的化合物。

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