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红细胞衰老。II. 神经氨酸酶处理的人红细胞的异常电泳特性。

Red cell aging. II. Anomalous electrophoretic properties of neuraminidase treated human erythrocytes.

作者信息

Nordt F J, Knox R J, Seaman G V

出版信息

J Cell Physiol. 1978 Nov;97(2):209-20. doi: 10.1002/jcp.1040970210.

Abstract

Desialylation of human red blood cells (RBC) by Vibrio cholerae neuraminidase (VCN) was found to produce cells with electrophoretic properties which were inconsistent with the view of simple loss of N-acetylneuraminic acid (NANA) as the sole effect of VCN treatment. Modification of human RBC with 50--350 U VCN/10(10) RBC for one hour at 37 degrees C releases 90-100% of the NANA and produces a progressive decrease towards zero in their electrophoretic mobilities when measured in 0.15 M NaCl (pH 7.2) at 25 degrees C. The appearance of positive groups on the desialylated cells was indicated by the VCN-treated cells displaying positive mobilities below approximately pH 5.5 and increased negative mobilities at approximately pH 9 as well as substantial increases in their mobility at neutral pH following treatment with formaldehyde. Adsorption of about 95% of the VCN activity at 0 degrees C to the RBC did not produce any significant change in their electrophoretic mobilities thus indicating that the observed changes in the electrophoretic properties of the RBC following VCN treatment could not be attributable to adsorption of VCN. These studies indicate that the cationic charge groups which appear at the electrophoretic surface of the RBC after VCN treatment are probably of endogenous origin. It is suggested that this alteration rather than simple NANA release may operate to shorten the in vivo survival time of desialylated red cells.

摘要

霍乱弧菌神经氨酸酶(VCN)对人红细胞(RBC)进行去唾液酸化处理后,发现所产生细胞的电泳特性与以下观点不一致,即认为VCN处理的唯一作用是简单地使N - 乙酰神经氨酸(NANA)丢失。用50 - 350 U VCN/10¹⁰个RBC在37℃下对人RBC进行修饰处理1小时,可释放90 - 100%的NANA,并且当在25℃下于0.15 M NaCl(pH 7.2)中测量时,其电泳迁移率会逐渐降至零。去唾液酸化细胞上出现正电荷基团的表现为,经VCN处理的细胞在pH约5.5以下显示正迁移率,在pH约9时负迁移率增加,以及在用甲醛处理后其在中性pH下的迁移率大幅增加。在0℃时约95%的VCN活性吸附到RBC上,并未使其电泳迁移率产生任何显著变化,因此表明VCN处理后RBC电泳特性的观察到的变化并非归因于VCN的吸附。这些研究表明,VCN处理后出现在RBC电泳表面的阳离子电荷基团可能起源于内源性。有人提出,这种改变而非简单的NANA释放可能起到缩短去唾液酸化红细胞体内存活时间的作用。

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