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Concurrent expression of erythroid and renal aquaporin CHIP and appearance of water channel activity in perinatal rats.

机译:红细胞和肾水通道蛋白芯片同时表达和围产期大鼠水通道活动的出现。

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摘要

Major phenotypic changes occur in red cell membranes during the perinatal period, but the underlying molecular explanations remain poorly defined. Aquaporin CHIP, the major erythroid and renal water channel, was studied in perinatal rats using affinity-purified anti-CHIP IgG for immunoblotting, flow cytometry, and immunofluorescence microscopy. CHIP was not detected in prenatal red cells but was first identified in circulating red cells on the third postnatal day. Most circulating red cells were positive for CHIP by the seventh postnatal day, and this proportion rose to nearly 100% by the 14th day. The ontogeny of red cell CHIP correlated directly with acquisition of osmotic water permeability and inversely with Arrhenius activation energy. Only minor alterations in the composition of red cell membrane lipids occurred at this time. Immunohistochemical analysis of perinatal kidneys demonstrated a major induction of CHIP in renal proximal tubules and descending thin limbs at birth, coincident with the development of renal concentration mechanisms. Therefore, water channels are unnecessary for oxygen delivery or survival in the prenatal circulation, however CHIP may confer red cells with the ability to rehydrate rapidly after traversing the renal medulla, which becomes hypertonic after birth.
机译:在围产期,主要的表型改变发生在红细胞膜中,但是对潜在的分子解释仍然不清楚。在围生期大鼠中,使用亲和纯化的抗CHIP IgG进行了免疫印迹,流式细胞术和免疫荧光显微镜检查,研究了水通道蛋白CHIP(主要的类红细胞和肾水通道)。在产前红细胞中未检测到CHIP,但在产后第三天首次在循环红细胞中发现了CHIP。到产后第七天,大多数循环中的红细胞对CHIP呈阳性,到第14天,这一比例上升至近100%。红细胞CHIP的个体发育与渗透水渗透性的获得直接相关,与阿累尼乌斯的活化能成反比。此时,红细胞膜脂质的组成仅发生微小变化。围产期肾脏的免疫组织化学分析显示,出生时肾脏近端小管和下肢细小肢中主要诱导了CHIP,这与肾脏浓缩机制的发展相吻合。因此,水通道对于产前循环中的氧气输送或生存是不必要的,但是CHIP可能赋予红细胞穿过肾脏髓质后迅速补水的能力,而肾脏髓质在出生后会变得高渗。

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