Sandow A, Isaacson A
J Gen Physiol. 1966 May;49(5):937-61. doi: 10.1085/jgp.49.5.937.
In addition to the previously studied Zn(2+), low concentrations (about 0.5 mM) of Be(2+), Ba(2+), Cd(2+), Ni(2+), Cu(2+), Pt(4+) and, outstandingly, 0.5 microM of UO(2) (2+), potentiate the twitch of frog sartorius and toe muscles by prolonging the active state of contraction. The degree of potentiation is a roughly S-shaped function of p(metal(2+)), suggesting that each metal binds to a ligand of the muscle fiber, representative apparent affinity constants being: UO(2) (2+), 5 x 10(6); Zn(2+), 2.8 x 10(5); and Cd(2+), 2 x 10(4). UO(2) (2+) potentiation effects are rapidly reversed by PO(4), and Zn(2+) and Cd(2+) effects by EDTA, PO(4), and cysteine. The rapidity of these reversals by the nonpenetrating EDTA and PO(4), and the fact that heavy metal ions evidently potentiate by prolonging the action potential, indicate that the metal potentiators exert their primary action at readily accessible (i.e. plasma and T tubular) membrane sites. The relatively slow kinetics of development of potentiation, and the even slower reversal of it in pure Ringer's solution, indicate that the metal ions are bound to connective tissue, as well as to muscle fibers. The binding effects at the readily accessible membrane sites evidently impairs delayed rectification and thus modifies the action potential and excitation-contraction coupling so as to cause potentiation. SH is excluded, and PO(4) and imidazole are possibilities, as the membrane ligand binding the potentiating metal ions.
除了先前研究过的Zn(2+)外,低浓度(约0.5 mM)的Be(2+)、Ba(2+)、Cd(2+)、Ni(2+)、Cu(2+)、Pt(4+),以及特别突出的0.5 microM的UO(2)(2+),通过延长收缩的激活状态来增强青蛙缝匠肌和趾肌的抽搐。增强程度大致是p(金属(2+))的S形函数,这表明每种金属都与肌纤维的一种配体结合,代表性的表观亲和常数为:UO(2)(2+),5×10(6);Zn(2+),2.8×10(5);Cd(2+),2×10(4)。PO(4)能迅速逆转UO(2)(2+)的增强作用,EDTA、PO(4)和半胱氨酸能逆转Zn(2+)和Cd(2+)的作用。非渗透性的EDTA和PO(4)能迅速逆转这些作用,以及重金属离子显然通过延长动作电位来增强作用这一事实,表明金属增强剂在易于接近的(即血浆和T小管)膜部位发挥其主要作用。增强作用发展的动力学相对较慢,以及在纯林格氏液中其逆转甚至更慢,表明金属离子不仅与肌纤维结合,还与结缔组织结合。在易于接近的膜部位的结合作用显然损害延迟整流,从而改变动作电位和兴奋 - 收缩偶联,进而导致增强作用。排除了SH,PO(4)和咪唑作为结合增强性金属离子的膜配体是有可能的。