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磷酸精氨酸对鱿鱼轴突中Na(+)-Ca2+交换的刺激作用——代谢调节的新途径?

Phosphoarginine stimulation of Na(+)-Ca2+ exchange in squid axons--a new pathway for metabolic regulation?

作者信息

DiPolo R, Beaugé L

机构信息

Centro de Biofísica y Bioquímica, IVIC, Caracas, Venezuela.

出版信息

J Physiol. 1995 Aug 15;487(1):57-66. doi: 10.1113/jphysiol.1995.sp020861.

Abstract
  1. [Na+]o-dependent Ca2+ efflux (forward Na(+)-Ca2+ exchange), [32P]ATP wash-out curves and [ATP] were measured in internally dialysed squid giant axons at 17-18 degrees C. 2. We found that dialysing squid axons without ATP and with [Ca2+]i around 1 microM the basal levels of the [Na+]o-dependent Ca2+ efflux were significantly higher in the presence of N omega-phosphoarginine (PA). Phosphocreatine, a related phosphagen, is without effect. 3. PA stimulation of the Na(+)-Ca2+ exchange occurs in the complete absence of ATP (< 1 microM), being independent of, and additive to, the ATP-stimulated [Na+]o-dependent Ca2+ efflux. PA stimulation of [Na+]o-dependent Ca2+ efflux is fully and rapidly reversible with a Km around 7.7 mM. Activation by saturating [PA] is equivalent in magnitude to that of ATP. 4. PA stimulation of Na(+)-Ca2+ exchange is markedly dependent on intracellular Ca2+ and Mg2+ ions. Below 0.5 microM Ca2+i PA effect is negligible, becoming noticeable between 0.8 and 2 microM. In addition, Ca2+i considerably increases the rate at which PA activates the Na(+)-Ca2+ exchange. Although there is no absolute requirement of the PA effect for Mg2+ ions, this divalent cation largely stimulates the PA effect. 5. This work demonstrates, for the first time, the presence in squid axons of a new form of metabolic regulation of the Na(+)-Ca2+ exchange directly and solely related to PA and different from that of MgATP. This novel mechanism is likely to play a physiological role in Ca2+ extrusion through the Na(+)-Ca2+ exchanger, particularly at micromolar [Ca2+]i.
摘要
  1. 在17 - 18摄氏度下,对经内部透析的枪乌贼巨大轴突测量了[Na⁺]o依赖性Ca²⁺外流(正向Na⁺ - Ca²⁺交换)、[³²P]ATP洗脱曲线和[ATP]。2. 我们发现,在没有ATP且[Ca²⁺]i约为1微摩尔的情况下透析枪乌贼轴突时,在Nω - 磷酸精氨酸(PA)存在下,[Na⁺]o依赖性Ca²⁺外流的基础水平显著更高。相关的磷酸肌酸则没有作用。3. 在完全没有ATP(<1微摩尔)的情况下,PA对Na⁺ - Ca²⁺交换有刺激作用,它独立于ATP刺激的[Na⁺]o依赖性Ca²⁺外流且与之相加。PA对[Na⁺]o依赖性Ca²⁺外流的刺激作用完全且快速可逆,Km约为7.7毫摩尔。饱和[PA]时的激活幅度与ATP相当。4. PA对Na⁺ - Ca²⁺交换的刺激明显依赖于细胞内的Ca²⁺和Mg²⁺离子。低于0.5微摩尔Ca²⁺i时,PA的作用可忽略不计,在0.8至2微摩尔之间变得明显。此外,Ca²⁺i大大增加了PA激活Na⁺ - Ca²⁺交换的速率。虽然PA的作用对Mg²⁺离子没有绝对要求,但这种二价阳离子在很大程度上刺激了PA的作用。5. 这项工作首次证明,在枪乌贼轴突中存在一种新形式的Na⁺ - Ca²⁺交换代谢调节,它直接且仅与PA相关,不同于MgATP的调节。这种新机制可能在通过Na⁺ - Ca²⁺交换体进行的Ca²⁺外排中发挥生理作用,特别是在微摩尔级的[Ca²⁺]i水平时。

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