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早期胆红素的非促红细胞生成成分。

The nonerythropoietic component of early bilirubin.

作者信息

Levitt M, Schacter B A, Zipursky A, Israels L G

出版信息

J Clin Invest. 1968 Jun;47(6):1281-94. doi: 10.1172/JCI105820.

Abstract

The early labeled bilirubin consists of two primary components. The more rapidly synthesized of the two is independent of erythropoiesis (nonerythropoietic), whereas the second fraction is related to red cell production (erythyropoietic). The present studies concern the origin of the nonerythropoietic component. The nonerythropoietic, early labeled bilirubin was studied in bile fistula rats with (delta ALA)-4-(14)C delta aminolevulinic acid and glycine-2-(14)C as precursors. That nephrectomy did not reduce the size of this component despite the large and rapidly turning over pool of renal heme suggests that this pool may be of minor importance in its production. Intoxication with lead to a level that reduced hepatic heme synthesis was associated with a decrease in early bilirubin formation. The synthesis of this bilirubin was assessed in animals with phenobarbital-induced heme protein and cycloheximide-suppressed protein synthesis. Rats pretreated with phenobarbital at a dose level of 60 mg/kg with induction of cytochrome P-450 synthesis showed a minor increase in early labeling when glycine-2-(14)C but not when delta ALA-4-(14)C was used as precursor. Rats given cycloheximide at a dose level that markedly reduced hepatic protein and cytochrome P-450 synthesis but allowed heme synthesis to continue at 60% of its pretreatment level synthesized normal or increased amounts of early bilirubin from delta ALA-4-(14)C. Allylisopropylacetamide intoxication caused little change in early bilirubin formation, whereas aminotriazole given at a time after maximal hepatic heme labeling produced a small but significant increase in the appearance of labeled bilirubin. These findings indicate that early bilirubin production is little influenced by increased hepatic porphyrin synthesis or by changes in the rapidly turning over heme protein P-450. A minimal increase attends catalase inactivation by aminotriazole. Normal or increased synthesis takes place in the presence of suppression of protein synthesis. This finding suggests that the nonerythropoietic early bilirubin may itself consist of two subcomponents. The first of these may arise from free tissue heme or its precursors, and the second may derive from the turnover of the heme proteins. The first subcomponent may serve as a regulatory mechanism for the removal of heme synthesized in excess of its protein acceptor. A composite scheme is proposed for the origin of the total early bilirubin from heme compartments in tissue and marrow.

摘要

早期标记胆红素由两个主要成分组成。两者中合成速度较快的成分独立于红细胞生成(非红细胞生成性),而第二个部分与红细胞生成有关(红细胞生成性)。目前的研究关注非红细胞生成性成分的来源。以(δ-氨基乙酰丙酸)-4-(14)Cδ-氨基乙酰丙酸和甘氨酸-2-(14)C作为前体,在胆瘘大鼠中研究了非红细胞生成性早期标记胆红素。尽管肾脏血红素池大且周转迅速,但肾切除并未减小该成分的大小,这表明该池在其产生过程中可能不太重要。铅中毒至降低肝血红素合成的水平与早期胆红素形成减少有关。在苯巴比妥诱导血红素蛋白合成且环己酰亚胺抑制蛋白合成的动物中评估了这种胆红素的合成。以60mg/kg剂量水平用苯巴比妥预处理并诱导细胞色素P-450合成的大鼠,当使用甘氨酸-2-(14)C作为前体时早期标记略有增加,但使用δ-氨基乙酰丙酸-4-(14)C时则没有增加。给予环己酰亚胺,其剂量水平显著降低肝蛋白和细胞色素P-450合成,但使血红素合成继续维持在预处理水平的60%,该大鼠从δ-氨基乙酰丙酸-4-(14)C合成正常或增加量的早期胆红素。烯丙基异丙基乙酰胺中毒对早期胆红素形成几乎没有影响,而在肝血红素最大标记后给予氨基三唑,标记胆红素的出现有小幅但显著的增加。这些发现表明,早期胆红素的产生受肝卟啉合成增加或快速周转的血红素蛋白P-450变化的影响很小。氨基三唑使过氧化氢酶失活会有最小程度的增加。在蛋白合成受抑制的情况下会发生正常或增加的合成。这一发现表明,非红细胞生成性早期胆红素本身可能由两个亚成分组成。其中第一个可能来自游离组织血红素或其前体,第二个可能来自血红素蛋白的周转。第一个亚成分可能作为一种调节机制,用于清除合成量超过其蛋白受体的血红素。提出了一个关于组织和骨髓中血红素区室产生总早期胆红素的综合方案。

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