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碳酸酐酶在大鼠肠道吸收中的非催化作用

Non-catalytic role of carbonic anhydrase in rat intestinal absorption.

作者信息

Charney Alan N, Alexander-Chacko Jesline, Gummaconda Ramanashree, Egnor Richard W

机构信息

Nephrology Section, VA Medical Center, New York University School of Medicine, 423 East 23rd Street, New York, NY 10010, USA.

出版信息

Biochim Biophys Acta. 2002 Nov 14;1573(2):141-8. doi: 10.1016/s0304-4165(02)00370-7.

Abstract

Carbonic anhydrase (CA) inhibition reduces NaCl absorption in rat distal ileum, a pH-sensitive, low CA activity tissue, and in distal colon, a CO(2)-sensitive, high CA activity tissue. We hypothesized that CA plays a non-catalytic role in NaCl absorption in these segments. Unidirectional fluxes of Na(+) and Cl(-), and total HCO(3)(-) generation (estimated as the sum of radiolabeled HCO(3)(-) and CO(2) produced from glucose) were measured in Ussing chambers in nominally CO(2), HCO(3)(-)-free HEPES Ringer. Measurements were made in the presence and absence of 0.1 mM methazolamide, a membrane-permeant CA inhibitor. Ringer pH reduction from 7.6 to 7.1 stimulated ileal but not colonic Na(+) and Cl(-) absorption. In the ileum, methazolamide reduced J(ms)(Na) and J(ms)(Cl) and caused net Cl(-) secretion at pH 7.6, and prevented the stimulatory effect of lowering pH. In the colon, methazolamide reduced Na(+) and Cl(-) absorption at pH 7.6. Total HCO(3)(-) generation was minimal in HEPES at pH 7.6 and 7.1 in both segments, was minimally affected by methazolamide, and did not account for the changes in Cl(-) absorption caused by pH or methazolamide. We conclude that CA plays a role in ileal and colonic NaCl absorption independent of its catalytic function.

摘要

碳酸酐酶(CA)抑制作用可减少大鼠回肠末端(一种对pH敏感、CA活性较低的组织)和结肠远端(一种对CO₂敏感、CA活性较高的组织)中氯化钠的吸收。我们推测CA在这些节段的氯化钠吸收过程中发挥非催化作用。在名义上不含CO₂、HCO₃⁻的HEPES林格液的Ussing小室中,测量了Na⁺和Cl⁻的单向通量以及总HCO₃⁻生成量(通过葡萄糖产生的放射性标记HCO₃⁻和CO₂的总和估算)。测量在存在和不存在0.1 mM甲酰唑胺(一种可透过细胞膜的CA抑制剂)的情况下进行。林格液pH从7.6降至7.1刺激了回肠末端而非结肠的Na⁺和Cl⁻吸收。在回肠末端,甲酰唑胺降低了J(ms)(Na)和J(ms)(Cl),并在pH 7.6时导致Cl⁻净分泌,且阻止了降低pH的刺激作用。在结肠中,甲酰唑胺在pH 7.6时降低了Na⁺和Cl⁻的吸收。在两个节段中,pH 7.6和7.1时HEPES中的总HCO₃⁻生成量极少,受甲酰唑胺的影响极小,且无法解释pH或甲酰唑胺引起的Cl⁻吸收变化。我们得出结论,CA在回肠末端和结肠的氯化钠吸收中发挥作用,与其催化功能无关。

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