Department of Pharmacology & Therapeutics, University of Manitoba, Winnipeg, MB R3T 2N2, Canada.
Department of Biological Sciences, University of Manitoba, Winnipeg, MB R3T 2N2, Canada.
Comp Biochem Physiol A Mol Integr Physiol. 2023 Aug;282:111455. doi: 10.1016/j.cbpa.2023.111455. Epub 2023 May 30.
Na/H exchangers are directly involved in a variety of an animal's essential physiological processes such as ionoregulation, acid-base regulation, nitrogenous waste excretion, and nutrient absorption. While nine NHX isoforms have been identified in Caenorhabditis elegans, the physiological importance of each isoform is not understood. The current study aimed to further our knowledge of NHX-3 which has previously been suggested to be involved in the movement of ammonia and acid-base equivalents across the nematode's hypodermis. Although NHX-3 knockout mutant nematodes exported H and imported Na at slower rates than wild-type nematodes, attempts to inhibit the NHX activity of mutant nematodes using amiloride and EIPA caused an unexpected increase in hypodermal H export and did not impact Na fluxes suggesting that the different H and Na transport profiles of the nematodes are likely due to compensatory changes in the mutants in response to the NHX-3 knockout, rather than the loss of NHX-3's physiological function. Significant changes in the mRNA expression of 7 other NHX isoforms, 2 Na/H antiporter isoforms, and the V-type H-ATPase were detected between wild-type and mutant nematodes. Furthermore, mutant nematodes possessed significantly reduced rates of cytochrome C oxidase activity and ammonia excretion rates, indicating the knockout of NHX-3 induced fundamental changes in metabolism that could impact the nematode's need to eliminate metabolic end-products like H and ammonia that relate to NHX transport. While C. elegans is a popular genetic model with cheap and accessible commercial mutants, our findings suggest caution in interpretation of results in studies using mutants to study physiological traits and the biological significance of specific transporters.
钠/氢交换器直接参与动物的各种基本生理过程,如离子调节、酸碱调节、氮废物排泄和营养吸收。虽然在秀丽隐杆线虫中已经鉴定出 9 种 NHX 同工型,但每种同工型的生理重要性尚不清楚。本研究旨在进一步了解 NHX-3,先前有研究表明 NHX-3 参与氨和酸碱当量在线虫表皮下的运动。尽管 NHX-3 敲除突变体线虫的 H 排出和 Na 摄取速度比野生型线虫慢,但使用阿米洛利和 EIPA 抑制突变体线虫的 NHX 活性会导致意想不到的表皮下 H 排出增加,而不影响 Na 通量,这表明线虫的不同 H 和 Na 转运谱可能是由于突变体对 NHX-3 敲除的代偿性变化,而不是 NHX-3 生理功能的丧失。在野生型和突变体线虫之间检测到 7 种其他 NHX 同工型、2 种 Na/H 反向转运体同工型和 V 型 H-ATP 酶的 mRNA 表达显著变化。此外,突变体线虫的细胞色素 C 氧化酶活性和氨排泄率显著降低,表明 NHX-3 的敲除诱导了代谢的根本性变化,这可能会影响线虫消除代谢终产物(如与 NHX 转运相关的 H 和氨)的需求。虽然秀丽隐杆线虫是一种流行的遗传模型,具有廉价且易于获得的商业突变体,但我们的发现表明,在使用突变体研究生理特征和特定转运体的生物学意义的研究中,对结果的解释要谨慎。