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AVT 参与了真鲷(Sparus aurata)肠道中离子转运的调节。

AVT is involved in the regulation of ion transport in the intestine of the sea bream (Sparus aurata).

机构信息

Centre of Marine Sciences (CCMar), CIMAR - Laboratório Associado, Universidade do Algarve, Campus de Gambelas, 8005-139 Faro, Portugal; Departamento de Biología, Facultad de Ciencias del Mar y Ambientales, Universidad de Cádiz, E-11510 Puerto Real (Cádiz), Spain; Instituto de Ciencias Marinas de Andalucía, Consejo Superior Investigaciones Científicas (ICMAN-CSIC), E-11510 Puerto Real (Cádiz), Spain.

出版信息

Gen Comp Endocrinol. 2013 Nov 1;193:221-8. doi: 10.1016/j.ygcen.2013.07.017. Epub 2013 Aug 22.

Abstract

The intestine of marine fish plays a crucial role in ion homeostasis by selective processing of ingested fluid. Although arginine vasotocin (AVT) is suggested to play a role in ion regulation in fish, its action in the intestine has not been demonstrated. Thus, the present study investigated in vitro the putative role of AVT in intestinal ion transport in the sea bream (Sparus aurata). A cDNA encoding part of an AVT receptor was isolated and phylogenetic analysis revealed it clustered with the V1a2-type receptor clade. V1a2 transcripts were expressed throughout the gastrointestinal tract, from esophagus to rectum, and were most abundant in the rectum regardless of long-term exposure to external salinities of 12, 35 or 55p.p.t. Basolateral addition of AVT (10(-6)M) to the anterior intestine and rectum of sea bream adapted to 12, 35 or 55p.p.t. mounted in Ussing chambers produced rapid salinity and region dependent responses in short circuit current (Isc), always in the absorptive direction. In addition, AVT stimulation of absorptive Isc conformed to a dose-response curve, with significant effects achieved at 10(-8)M, which corresponds to physiological values of plasma AVT for this species. The effect of AVT on intestinal Isc was insensitive to the CFTR selective inhibitor NPPB (200μM) applied apically, but was completely abolished in the presence of apical bumetanide (200μM). We propose a role for AVT in the regulation of ion absorption in the intestine of the sea bream mediated by an absorptive bumetanide-sensitive mechanism, likely NKCC2.

摘要

海洋鱼类的肠道通过对摄入液体的选择性处理,在离子稳态中发挥着关键作用。虽然精氨酸加压素(AVT)被认为在鱼类的离子调节中发挥作用,但它在肠道中的作用尚未得到证实。因此,本研究在体外研究了 AVT 在真鲷(Sparus aurata)肠道离子转运中的可能作用。分离出编码部分 AVT 受体的 cDNA,并进行系统发育分析表明,它与 V1a2 型受体分支聚类。V1a2 转录本在整个胃肠道中表达,从食道到直肠,并且无论长期暴露于 12、35 或 55 ppt 的外部盐度,直肠中的表达最为丰富。将 AVT(10(-6)M)添加到适应于 12、35 或 55 ppt 的真鲷的前肠和直肠的基底外侧,可在 Ussing 室中迅速产生与盐度和区域相关的短电流(Isc)反应,始终朝向吸收方向。此外,AVT 对吸收性 Isc 的刺激符合剂量反应曲线,在 10(-8)M 时达到显著效果,这对应于该物种的血浆 AVT 的生理值。AVT 对肠道 Isc 的作用对顶端应用的 CFTR 选择性抑制剂 NPPB(200μM)不敏感,但在顶端布美他尼(200μM)存在的情况下完全被消除。我们提出 AVT 在真鲷肠道离子吸收调节中的作用是通过吸收性布美他尼敏感机制介导的,可能是 NKCC2。

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