Ferritin.

V. Fairbanks, G. G. Klee
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Abstract

The iron storage protein ferritin is found in all cells of the body as multiple isoferritins composed of 24 sub units of two types. The structure is well understood from increasingly detailed analysis by X-ray crystallography. Genes for the principal subunits (called H and L) have been cloned and are located on chromosomes 11q and 19q respectively. The production of H24 and L24 recombinant molecules is making it possible to explore the relationship between structure and function. The control of ferritin synthesis by iron at the level of translation is providing a model for understanding the control of protein synthesis. H-rich isoferritins are of considerable interest in haematology as they appear to be implicated in control of haemopoiesis and development of malignancy. Whether or not an abnormality in ferritin is the cause of hereditary haemochromatosis is not yet resolved.
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铁蛋白。
铁蛋白是一种储存铁的蛋白质,存在于人体的所有细胞中,是由两种类型的24个亚基组成的多种异铁蛋白。通过x射线晶体学的越来越详细的分析,可以很好地理解这种结构。主要亚单位(称为H和L)的基因已被克隆,分别位于染色体11q和19q上。H24和L24重组分子的产生使探索结构与功能之间的关系成为可能。铁在翻译水平上对铁蛋白合成的控制为理解蛋白质合成的控制提供了一个模型。富h异铁蛋白在血液学中具有相当大的兴趣,因为它们似乎与造血控制和恶性肿瘤的发展有关。铁蛋白异常是否为遗传性血色素病的病因尚不清楚。
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Ferritin. Progress in the monitoring of human interferon in body fluids and the phenotypic expression of human interferon activity. Progress in the measurement of circulating fibrinogen derivatives. Peripheral blood and bone marrow involvement by non-Hodgkin's lymphoma: morphological, immunological and cytochemical features. B cell neoplasms: correlation of recent developments with the biology of normal B lymphocytes.
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