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来自魁蛤科血蛤(Noetia ponderosa)的二聚体血红蛋白。结构与功能特性。

Dimeric hemoglobins from the arcid blood clam, Noetia ponderosa. Structure and functional properties.

作者信息

San George R C, Nagel R L

出版信息

J Biol Chem. 1985 Apr 10;260(7):4331-7.

PMID:3980479
Abstract

The hemoglobin found in the nucleated erythrocytes of the arcid blood clam Noetia ponderosa is heterogeneous and consists of two electrophoretic components, Hb-Major and Hb-Minor, present in about 80% and 20% proportions, respectively. Both components are hemoglobin dimers over a wide concentration range based on light-scattering measurements. No higher aggregation states are observed. The oxygen binding by Hb-Major and Hb-Minor is characterized by p50 values of 16.8 and 8.7 mm of Hg and Hill coefficients of 1.4 and 1.2, respectively, at pH 7.0 and 25 degrees C. Neither component exhibits an alkaline Bohr effect. An unusual nonlinear Hill plot is observed for Hb-Major. Hb-Major is composed of two different polypeptide chains and thus is a heterodimer based on sodium dodecyl sulfate/urea-polyacrylamide gel electrophoresis and reverse phase high performance liquid chromatography. By the same methods, Hb-Minor is a homodimer and may share a common chain with Hb-Major. Amino acid compositions of the two hemoglobins indicate 2 histidines/polypeptide chain which are presumably involved in the coordination of the heme iron. Visible absorption spectra indicate the heme environment is normal in the oxy state but perhaps more constrained in the deoxy state. Oxygen binding as a function of temperature and concentration and binding by the intact erythrocytes indicates the absence of intracellular regulators of oxygen binding.

摘要

在重厚血蛤(Noetia ponderosa)有核红细胞中发现的血红蛋白是异质的,由两种电泳成分组成,即主要血红蛋白(Hb-Major)和次要血红蛋白(Hb-Minor),其比例分别约为80%和20%。基于光散射测量,在很宽的浓度范围内,这两种成分均为血红蛋白二聚体。未观察到更高的聚集状态。在pH 7.0和25℃条件下,主要血红蛋白和次要血红蛋白的氧结合特性分别为:p50值为16.8和8.7 mmHg,希尔系数分别为1.4和1.2。两种成分均未表现出碱性博尔效应。主要血红蛋白观察到一种不寻常的非线性希尔图。根据十二烷基硫酸钠/尿素-聚丙烯酰胺凝胶电泳和反相高效液相色谱分析,主要血红蛋白由两条不同的多肽链组成,因此是一种异二聚体。通过同样的方法,次要血红蛋白是一种同二聚体,可能与主要血红蛋白共享一条共同的链。两种血红蛋白的氨基酸组成表明每条多肽链有2个组氨酸,推测它们参与血红素铁的配位。可见吸收光谱表明,血红素环境在氧合状态下正常,但在脱氧状态下可能受到更多限制。作为温度和浓度函数的氧结合以及完整红细胞的结合表明不存在氧结合的细胞内调节剂。

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