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The increase of oxygen consumption after a flash of light is tightly coupled to sodium pumping in the lateral ocellus of barnacle

机译:闪光灯闪烁后耗氧量的增加与藤壶外侧眼中的钠泵送紧密相关

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摘要

In the lateral ocellus of the barnacle, we have tested the hypothesis that the transient increase of oxygen consumption (delta QO2) induced by light results from an increase in the rate of Na+ pumping. With a Na(+)-sensitive microelectrode, we measured the intracellular concentration of Na+ (Nai) in the photoreceptor cells. Nai was 17.6 +/- 1.2 mM (SE; n = 18) in darkness and it increased transiently by 10-20 mM after an 80-ms flash of intense light. The increase of Nai recovered in about the same time as the delta QO2, and the Na+/O2 ratio was 19.2 +/- 3.8 (SE; n = 6). Removing Na+ from the bath caused the delta QO2 to decrease by 79 +/- 3% (SE; n = 5). Exposure to 25 microM ouabain inhibited Na+ pumping and abolished the delta QO2. Removal of K+ from the bathing solution inhibited Na+ pumping in darkness, but mostly shortened the duration of the delta QO2; with a K(+)-sensitive microelectrode, we measured pericellular [K+] and found that it increased after the flash for about the same time as the delta QO2. Increasing Na+ pumping in darkness by reintroducing K+ in the bath or by injecting Na+ into one of the photoreceptor cells induced a delta QO2. Finally, intracellular injection of adenosine diphosphate and inorganic phosphate (ADP + Pi), the metabolic products of ATP splitting by the Na+ pump, also induced a delta QO2 in darkness. We conclude that all the results obtained are consistent with the formulated hypothesis.
机译:在藤壶的外侧卵眼中,我们测试了以下假设:由光引起的耗氧量(δQO2)的瞬时增加是由Na +泵送速率的增加引起的。用Na(+)敏感的微电极,我们测量了感光细胞中Na +(Nai)的细胞内浓度。在黑暗中,Nai为17.6 +/- 1.2 mM(SE; n = 18),经过80毫秒的强光闪烁后,其瞬时增加了10-20 mM。 Nai的增加在与增量QO2大致相同的时间恢复,并且Na + / O2之比为19.2 +/- 3.8(SE; n = 6)。从镀液中除去Na +导致QO2下降了79 +/- 3%(SE; n = 5)。暴露于25 microM哇巴因可抑制Na +泵浦并消除δQO2。从沐浴液中去除K +可以抑制Na +在黑暗中的泵浦,但是大部分缩短了QO2的持续时间。使用K(+)敏感的微电极,我们测量了细胞周围的[K +],发现其在闪蒸后与增量QO2大致相同。通过在浴中重新引入K +或将Na +注入其中一个感光细胞来增加在黑暗中泵入Na +的能力,从而导致QO2的增加。最后,细胞内注射二磷酸腺苷和无机磷酸(ADP + Pi),这是Na +泵分解ATP的代谢产物,在黑暗中也会引起δQO2。我们得出的结论是,所有获得的结果均与提出的假设相符。

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