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蛋白质限制会在大鼠初始内髓集合管中依次诱导新的尿素转运过程。

Protein restriction sequentially induces new urea transport processes in rat initial IMCD.

作者信息

Isozaki T, Gillin A G, Swanson C E, Sands J M

机构信息

Department of Medicine, Emory University School of Medicine, Atlanta, Georgia 30322.

出版信息

Am J Physiol. 1994 May;266(5 Pt 2):F756-61. doi: 10.1152/ajprenal.1994.266.5.F756.

Abstract

We reported that feeding rats 8% protein for 4 wk induces two new urea transport processes in initial inner medullary collecting ducts (IMCD); neither is present in rats fed 18% protein. In this study, we measured the time course of induction of these transporters in perfused initial IMCD segments from rats fed 8% protein. Net urea flux was induced after 3 wk, whereas vasopressin-stimulated passive urea permeability (P(urea)) was induced after 2 wk. 8-Bromoadenosine 3',5'-cyclic monophosphate (8-BrcAMP) significantly increased P(urea)); adding vasopressin did not increase P(urea) further. In fact, there was no difference in vasopressin-stimulated cAMP production in initial or terminal IMCD segments from rats fed 18% or 8% protein, suggesting that the adaptive response was not due to increased cAMP production. Glucagon did not change cAMP production or P(urea). Specificity of the response was suggested because neither aldose reductase nor sorbitol dehydrogenase activity changed with feeding 8% protein. Thus 1) in initial IMCD segments, vasopressin-stimulated P(urea) is induced after 2 wk, but net urea flux requires 3 wk of feeding 8% protein; 2) this adaptation is not solely due to a higher rate of cAMP production; and 3) specificity of the adaptive response is suggested because activities of enzymes responding to decreases in concentrating ability are unchanged. These results suggest that two distinct urea transporters may be involved in the adaptation to a low-protein diet.

摘要

我们报道,给大鼠喂食4周8%蛋白质的食物会在初始髓质内集合管(IMCD)中诱导出两种新的尿素转运过程;而喂食18%蛋白质的大鼠则不存在这两种过程。在本研究中,我们测量了喂食8%蛋白质的大鼠灌注初始IMCD节段中这些转运蛋白的诱导时间进程。3周后诱导出净尿素通量,而2周后诱导出血管加压素刺激的被动尿素通透性(P(urea))。8-溴腺苷3',5'-环磷酸(8-BrcAMP)显著增加P(urea);添加血管加压素不会进一步增加P(urea)。事实上,喂食18%或8%蛋白质的大鼠初始或终末IMCD节段中血管加压素刺激的cAMP产生没有差异,这表明适应性反应不是由于cAMP产生增加所致。胰高血糖素不会改变cAMP产生或P(urea)。由于喂食8%蛋白质时醛糖还原酶和山梨醇脱氢酶活性均未改变,提示了反应的特异性。因此,1)在初始IMCD节段中,血管加压素刺激的P(urea)在2周后诱导产生,但净尿素通量需要喂食8%蛋白质3周;2)这种适应性变化不仅仅是由于cAMP产生速率较高;3)由于对浓缩能力下降有反应的酶的活性未改变,提示了适应性反应的特异性。这些结果表明,两种不同的尿素转运蛋白可能参与了对低蛋白饮食的适应性变化。

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