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人类红细胞带3“阴离子交换蛋白1”在转化淋巴细胞中表达。

Human erythroid band 3 "anion exchanger 1" is expressed in transformed lymphocytes.

作者信息

Kay M M, Vollard C H

机构信息

Dept. of Microbiology and Immunology, University of Arizona College of Medicine, Tucson 85724, USA.

出版信息

Cell Mol Biol (Noisy-le-grand). 1996 Nov;42(7):945-52.

PMID:8960772
Abstract

The anion transporter, band 3, is a ubiquitous protein. It is present in brain and all other tissues examined. Not only is band 3 present in cell membranes, but also in nuclear, Golgi and mitochondria membranes. There are four isoforms of band 3, the anion exchanger (AE) proteins, thus far discovered. They are products of different genes. Lymphocytes are reported to contain AE2, but not AE1. We hypothesized that induction or up-regulation of AE1 occurs when lymphocytes are transformed as an initial event in the path to malignancy. We transformed lymphocytes containing a single base mutation with Epstein Barr Virus (EBV). The mutation of band 3, high transport band 3 (HTbd3), exhibits anion transport that is 2-3 times normal in erythrocytes which contain AE1. This facilitated our identification of AE1 since the probability that 2 different gene products would have the same mutation approaches zero. Thus, we have a base mutation in addition to linear sequence to identify AE1. A 133 base pair (bp) fragment including the affected region was amplified from the mRNA of lymphocytes from the HTbd3 mutant. AE1 primers were used to amplify regions of interest. Reverse transcriptase polymerase chain reaction (RT-PCR) was used to generate cDNA which was sequenced. The sequence of the crucial 133 base pair segment from high transport lymphocytes was 100% identical to the sequence published for the red blood cell band 3 of the same mutant. As reported previously for erythrocytes, this mutation is a C-->T base change which changes a proline to leucine in the protein sequence. Restriction enzyme digests of AE1 cDNA from normal and HTBD3 lymphocytes confirmed that the proposita was homozygous for the mutation, and showed the father to be heterozygous. Anion transport was increased in HTbd3 EBV transformed lymphocytes, as was the case with HTbd3 erythrocytes. AE2 was identified in lymphocytes by sequence. Thus, EBV transformed lymphocytes express the erythroid band 3 (AE1) in addition to AE2.

摘要

阴离子转运蛋白3(band 3)是一种普遍存在的蛋白质。它存在于大脑以及所有其他检测过的组织中。band 3不仅存在于细胞膜中,还存在于细胞核、高尔基体和线粒体膜中。到目前为止,已发现band 3有四种异构体,即阴离子交换蛋白(AE)。它们是不同基因的产物。据报道,淋巴细胞含有AE2,但不含AE1。我们推测,淋巴细胞发生转化时,AE1会作为恶性肿瘤发展途径中的初始事件被诱导或上调。我们用爱泼斯坦-巴尔病毒(EBV)转化了含有单个碱基突变的淋巴细胞。band 3的突变体,即高转运band 3(HTbd3),在含有AE1的红细胞中表现出比正常情况高2至3倍的阴离子转运能力。这有助于我们鉴定AE1,因为两种不同基因产物具有相同突变的概率几乎为零。因此,除了线性序列外,我们还有一个碱基突变来鉴定AE1。从HTbd3突变体淋巴细胞的mRNA中扩增出一个包含受影响区域的133个碱基对(bp)的片段。使用AE1引物扩增感兴趣的区域。采用逆转录聚合酶链反应(RT-PCR)生成cDNA并进行测序。来自高转运淋巴细胞的关键133个碱基对片段的序列与同一突变体红细胞band 3公布的序列100%相同。如先前对红细胞的报道,该突变是一个C→T碱基变化,在蛋白质序列中将脯氨酸变为亮氨酸。对正常淋巴细胞和HTBD3淋巴细胞的AE1 cDNA进行限制性酶切分析证实,先证者的该突变是纯合的,而其父亲是杂合的。HTbd3 EBV转化的淋巴细胞中的阴离子转运增加,HTbd3红细胞也是如此。通过测序在淋巴细胞中鉴定出了AE2。因此,EBV转化的淋巴细胞除了表达AE2外,还表达红系band 3(AE1)。

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