University of British Columbia, Vancouver, BC, V6T 1Z4, Canada.
J Comp Physiol B. 2023 Jun;193(3):293-305. doi: 10.1007/s00360-023-01484-7. Epub 2023 Apr 8.
The unique teleost oxygenation system that permits enhanced oxygen unloading during stress comprises three main characteristics: pH-sensitive haemoglobin, red blood cell (RBC) intracellular pH (pHi) protection, and a heterogeneous distribution of plasma-accessible carbonic anhydrase (paCA). A heterogeneous distribution of paCA is essential; its presence permits enhanced oxygen unloading during stress, while its absence at the gills maintains conditions for oxygen uptake by pH-sensitive haemoglobins. We hypothesised that paCA would be absent in all four gill arches, as has been previously indicated for arch two, and that paCA would be present in all other tissues. Through a suite of biochemical and molecular methods, we confirmed the absence of paCA from all four arches. We also found evidence for paCA in nine other tissues and a lack of paCA availability in the stomach. Expression was highly variable between tissues and suggests these differences may be associated with their respective metabolic activities. Additionally, we analysed the specific CA-IV isoform expressed within each tissue and showed almost complete separation of expression between tissues; CA-IVa was detected in the heart, brain, anterior intestine, and liver, whereas CA-IVb was detected in all intestine sections, pyloric caeca, kidney, and white muscle. This adds to a growing collection of work suggesting CA-IVa and b play divergent roles in gas exchange and ion/acid-base balance, respectively. The current study represents the first comprehensive atlas of paCA availability within the circulatory system of the model teleost, rainbow trout, and fills important gaps in our knowledge of this unique oxygenation system.
独特的硬骨鱼氧合系统允许在应激期间增强氧气卸载,包括三个主要特征:对 pH 值敏感的血红蛋白、红细胞(RBC)细胞内 pH 值(pHi)保护和血浆可及碳酸酐酶(paCA)的异质分布。paCA 的异质分布是必需的;其存在允许在应激期间增强氧气卸载,而其在鳃中的不存在则维持了 pH 值敏感血红蛋白的氧气摄取条件。我们假设 paCA 将不存在于所有四个鳃弓中,就像之前已经表明的第二鳃弓一样,并且将存在于所有其他组织中。通过一系列生化和分子方法,我们证实了 paCA 从所有四个弓中缺失。我们还在其他九个组织中发现了 paCA 的证据,并且在胃中缺乏 paCA 的可用性。表达在组织之间高度可变,表明这些差异可能与其各自的代谢活动有关。此外,我们分析了每个组织中表达的特定 CA-IV 同工型,并显示出表达在组织之间几乎完全分离;CA-IVa 检测到在心脏、大脑、前肠和肝脏中,而 CA-IVb 则检测到在所有肠段、幽门盲囊、肾脏和白肌中。这增加了越来越多的工作,表明 CA-IVa 和 b 在气体交换和离子/酸碱平衡方面分别发挥不同的作用。本研究代表了对模型硬骨鱼虹鳟循环系统中 paCA 可用性的首次全面图谱,填补了我们对这种独特氧合系统的知识空白。