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肾上腺素和三碘甲状腺原氨酸调节淡水呼吸鱼非洲肺鱼中铁的处理:铁还原酶在铁摄取中的作用。

Adrenaline and triiodothyronine modify the iron handling in the freshwater air-breathing fish Anabas testudineus Bloch: role of ferric reductase in iron acquisition.

机构信息

Department of Zoology, University of Kerala, Kariavattom, Thiruvananthapuram 695581, Kerala, India.

出版信息

Gen Comp Endocrinol. 2013 Jan 15;181:130-8. doi: 10.1016/j.ygcen.2012.11.008. Epub 2012 Nov 17.

Abstract

The effects of in vivo adrenaline and triiodothyronine (T(3)) on ferric reductase (FR) activity, a membrane-bound enzyme that reduces Fe(III) to Fe(II) iron, were studied in the organs of climbing perch (Anabas testudineus Bloch). Adrenaline injection (10 ng g(-1)) for 30 min produced significant inhibition of FR activity in the liver and kidney and that suggests a role for this stress hormone in iron acquisition in this fish. Short-term T(3) injection (40 ng g(-1)) reduced FR activity in the gills of fed fish but not in the unfed fish. Similar reduction of FR activity was also obtained in the intestine and kidney of fed fish after T(3) injection. Feeding produced pronounced decline in FR activity in the spleen but T(3) challenge in fed and unfed fish increased its activity in this iron storing organ and that point to the sensitivity of FR system to feeding activity. The in vitro effects of Fe on FR activity in the gill explants of freshwater fish showed correlations of FR with Na(+), K(+)-ATPase and H(+)-ATPase activities. Substantial increase in the FR activity was found in the gill explants incubated with all the tested doses of Fe(II) iron (1.80, 3.59 and 7.18 μM) and Fe(III) iron (1.25, 2.51 and 5.02 μM) and this indicate that FR and Na pump activity are positively correlated. On the contrary, substantial reduction of gill H(+)-ATPase activity was found in the gill explants incubated with Fe(II) iron and Fe(III) iron indicating that perch gills may not require a high acidic microenvironment for the reduction of Fe(III) iron. Accumulation of iron in the gill explants after Fe(III) iron incubation implies a direct relationship between Fe acquisition and FR activity in this tissue. The inverse correlation between FR activity and H(+)-ATPase activity in Fe(II) or Fe(III) loaded gills and the significant positive correlations of FR activity with total [Fe] content in the Fe(III) loaded gills substantiate that FR which shows sensitivity to sodium and proton pumps, has a vital role in Fe(II) and Fe(III) iron handling in this fish. Our data also provide evidence that adrenaline, T(3) and the feeding status are the vital factors that can regulate the storage and handling of iron in fish.

摘要

体内肾上腺素和三碘甲状腺原氨酸 (T(3)) 对铁还原酶 (FR) 活性的影响,这种膜结合酶将 Fe(III)还原为 Fe(II)铁,在攀鲈 (Anabas testudineus Bloch) 的器官中进行了研究。肾上腺素注射 (10ng g(-1))30 分钟可显著抑制肝脏和肾脏中的 FR 活性,表明这种应激激素在鱼类获取铁方面具有作用。短期 T(3)注射 (40ng g(-1)) 可降低摄食鱼类鳃中的 FR 活性,但对未摄食鱼类没有影响。T(3)注射后,在摄食鱼类的肠和肾脏中也获得了类似的 FR 活性降低。摄食导致脾脏中 FR 活性明显下降,但 T(3)在摄食和未摄食鱼类中的挑战增加了其在这个铁储存器官中的活性,这表明 FR 系统对摄食活动敏感。淡水鱼鳃外植体中铁对 FR 活性的体外影响表明 FR 与 Na(+)、K(+)-ATP 酶和 H(+)-ATP 酶活性相关。在用所有测试剂量的 Fe(II)铁 (1.80、3.59 和 7.18μM) 和 Fe(III)铁 (1.25、2.51 和 5.02μM) 孵育的鳃外植体中发现 FR 活性显著增加,这表明 FR 和 Na 泵活性呈正相关。相反,在用 Fe(II)铁和 Fe(III)铁孵育的鳃外植体中,H(+)-ATP 酶活性显著降低,表明鲈鱼鳃可能不需要高酸性微环境来还原 Fe(III)铁。在用 Fe(III)铁孵育后,铁在鳃外植体中的积累表明,在这种组织中,Fe 摄取和 FR 活性之间存在直接关系。在 Fe(II)或 Fe(III)负载的鳃中,FR 活性与 H(+)-ATP 酶活性呈负相关,在 Fe(III)负载的鳃中,FR 活性与总 [Fe]含量呈显著正相关,这表明 FR 对钠和质子泵敏感,在鱼类 Fe(II)和 Fe(III)铁处理中具有重要作用。我们的数据还提供了证据,表明肾上腺素、T(3)和摄食状态是可以调节鱼类铁储存和处理的重要因素。

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