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骆驼及骆驼科动物红细胞中增强的水结合能力和低细胞含水量。

Augmented water binding and low cellular water content in erythrocytes of camel and camelids.

作者信息

Bogner P, Csutora P, Cameron I L, Wheatley D N, Miseta A

机构信息

Department of Clinical Chemistry, University Medical School at Pécs, Pécs, Ifjuság u. 13. 7643, Hungary.

出版信息

Biophys J. 1998 Dec;75(6):3085-91. doi: 10.1016/S0006-3495(98)77749-5.

Abstract

We investigated a link between hemoglobin primary structure, hemoglobin hydrophobicity-hydrophilicity, and erythrocyte water content in various mammalian species. Some hemoglobin molecules, particularly those of the camel and camelids, contain more charged amino acid residues and are more hydrophilic than the hemoglobins of human and a number of other mammalian species. To test the in vivo significance of these alterations of hemoglobin primary structure, we determined the osmotically unresponsive erythrocyte water fractions in mannit solutions of various osmolarities at 4 degreesC. Among the species investigated, the size of the osmotically unresponsive erythrocyte water fraction relates in a positive linear way to hemoglobin hydrophilicity. The extreme low total erythrocyte water content of camel erythrocytes (1.1-1.3 g water/g dry mass) may be explained by a comparatively high osmotically unresponsive erythrocyte water fraction. It is proposed that alterations of hemoglobin sequences of camel and camelids may be the part of a natural selection process aimed at protecting these animals against osmotic dehydration in arid environments.

摘要

我们研究了各种哺乳动物物种中血红蛋白一级结构、血红蛋白疏水性-亲水性与红细胞含水量之间的联系。一些血红蛋白分子,特别是骆驼和骆驼科动物的血红蛋白分子,比人类和许多其他哺乳动物物种的血红蛋白含有更多带电荷的氨基酸残基,且更具亲水性。为了测试这些血红蛋白一级结构改变在体内的意义,我们在4℃下测定了不同渗透压的甘露醇溶液中红细胞对渗透压无反应的水分含量。在所研究的物种中,红细胞对渗透压无反应的水分含量大小与血红蛋白亲水性呈正线性关系。骆驼红细胞极低的总含水量(1.1 - 1.3克水/克干质量)可能是由于相对较高的红细胞对渗透压无反应的水分含量所致。有人提出,骆驼和骆驼科动物血红蛋白序列的改变可能是自然选择过程的一部分,旨在保护这些动物在干旱环境中免受渗透性脱水。

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On the osmotically unresponsive water compartment in cells.关于细胞中对渗透压无反应的水室。
Cell Biol Int. 2006 Jan;30(1):74-7. doi: 10.1016/j.cellbi.2005.09.007. Epub 2005 Dec 15.

本文引用的文献

1
THE CAMEL'S ERYTHROCYTE.骆驼的红细胞。
Nature. 1963 Oct 19;200:272-3. doi: 10.1038/200272a0.
6
Properties and metabolism of the aqueous cytoplasm and its boundaries.水性细胞质及其边界的特性与代谢。
Am J Physiol. 1984 Feb;246(2 Pt 2):R133-51. doi: 10.1152/ajpregu.1984.246.2.R133.

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