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适应不同环境温度的金鱼肠道氨基酸转运的调节

Regulation of amino acid transport across intestines of goldfish acclimatized to different environmental temperatures.

作者信息

Mepham T B, Smith M W

出版信息

J Physiol. 1966 Oct;186(3):619-31. doi: 10.1113/jphysiol.1966.sp008059.

Abstract
  1. Serosal transfers of valine and threonine were measured using everted sacs of anterior intestine taken from goldfish acclimatized to different temperatures.2. Both valine and threonine were actively transported at incubation temperatures equal to or greater than the previous environmental temperature of the fish. There was also a positive serosal transfer of valine, but not threonine, at incubation temperatures below the previous environmental temperature of the fish.3. The mean stable transmural potentials and amino-acid-evoked potentials depended both on the temperature to which the fish had been acclimatized and on the temperature at which the sacs were incubated.4. There was a linear relation between the transmural potential and the serosal transfer of amino acid, one additional mumole of valine or threonine being transferred/2 hr incubation period for each 3 mV rise in potential. There was a less obvious correlation between the amino-acid-evoked potential and on serosal transfer of amino acid.5. Acclimatization of the goldfish intestine from 8 to 25 degrees C, assessed by changes occurring in the transmural potential and serosal transfer of amino acids, tended to stabilize both parameters, but the compensation in each case was only partial.6. It is possible that the imbalance in transfer of valine-like and threonine-like amino acids, seen at incubation temperatures below the previous acclimatization temperature of the fish, has a special function in initiating the process of acclimatization to the new environmental temperature.
摘要
  1. 使用取自适应不同温度的金鱼的前肠外翻囊来测量缬氨酸和苏氨酸的浆膜转运。

  2. 在孵育温度等于或高于鱼先前的环境温度时,缬氨酸和苏氨酸均被主动转运。在孵育温度低于鱼先前的环境温度时,缬氨酸也有正向的浆膜转运,但苏氨酸没有。

  3. 平均稳定跨膜电位和氨基酸诱发电位既取决于鱼所适应的温度,也取决于囊孵育时的温度。

  4. 跨膜电位与氨基酸的浆膜转运之间存在线性关系,电位每升高3 mV,每2小时孵育期额外转运1 μmol缬氨酸或苏氨酸。氨基酸诱发电位与氨基酸的浆膜转运之间的相关性不太明显。

  5. 通过跨膜电位和氨基酸浆膜转运的变化评估,金鱼肠道从8℃适应到25℃倾向于使这两个参数稳定,但每种情况下的补偿都只是部分的。

  6. 在孵育温度低于鱼先前的适应温度时,缬氨酸样和苏氨酸样氨基酸转运的失衡可能在启动适应新环境温度的过程中具有特殊作用。

相似文献

3
Amino acid transport in the goldfish intestine.金鱼肠道中的氨基酸转运
J Physiol. 1966 Jun;184(3):673-84. doi: 10.1113/jphysiol.1966.sp007940.
8

本文引用的文献

1
Sodium-glucose interactions in the goldfish intestine.金鱼肠道中的钠-葡萄糖相互作用。
J Physiol. 1966 Feb;182(3):559-73. doi: 10.1113/jphysiol.1966.sp007837.

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