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在红细胞锚蛋白基因的转录本中发现了复杂的序列变异模式以及多个5'端和3'端。

Complex patterns of sequence variation and multiple 5' and 3' ends are found among transcripts of the erythroid ankyrin gene.

作者信息

Birkenmeier C S, White R A, Peters L L, Hall E J, Lux S E, Barker J E

机构信息

Jackson Laboratory, Bar Harbor, Maine 04609.

出版信息

J Biol Chem. 1993 May 5;268(13):9533-40.

PMID:8486643
Abstract

The structural protein ankyrin functions in red blood cells to link the spectrin-based membrane skeleton to the plasma membrane. Ankyrin proteins are now known to occur in most cell types, and two distinct ankyrin genes have been identified (erythroid (Ank-1) and brain (Ank-2)). We have characterized transcripts of the mouse erythroid ankyrin gene by cDNA cloning and DNA sequencing. Ank-1 transcripts of 7.5 and 9.0 kilobases are found in erythroid tissues, and a 9.0-kilobase transcript is found in cerebellum. RNA hybridization blot analysis of 13 additional mouse tissues has detected four novel Ank-1 transcripts (5.0, 3.5, 2.0, and 1.6 kilobases in size). Sequencing of Ank-1 cDNA clones isolated from mouse reticulocyte, spleen, and cerebellar libraries has identified (i) multiple 5' ends that indicate possible multiple promoters; (ii) alternative polyadenylation sites that probably account for the 7.5- and 9.0-kilobase size difference; (iii) a variety of small insertions and deletions that could produce transcripts (and ultimately proteins) of nearly identical size, but different functions; and (iv) clones with large deletions of coding sequence that account for the smaller transcripts seen in spleen, skeletal muscle, and heart.

摘要

锚蛋白作为一种结构蛋白,在红细胞中发挥作用,将基于血影蛋白的膜骨架与质膜相连。如今已知锚蛋白存在于大多数细胞类型中,并且已鉴定出两个不同的锚蛋白基因(红细胞型(Ank - 1)和脑型(Ank - 2))。我们通过cDNA克隆和DNA测序对小鼠红细胞型锚蛋白基因的转录本进行了表征。在红细胞组织中发现了7.5和9.0千碱基的Ank - 1转录本,在小脑中发现了9.0千碱基的转录本。对另外13种小鼠组织进行的RNA杂交印迹分析检测到了四种新的Ank - 1转录本(大小分别为5.0、3.5、2.0和1.6千碱基)。对从小鼠网织红细胞、脾脏和小脑文库中分离出的Ank - 1 cDNA克隆进行测序,确定了:(i)多个5'端,表明可能存在多个启动子;(ii)可变聚腺苷酸化位点,这可能是7.5千碱基和9.0千碱基大小差异的原因;(iii)多种小的插入和缺失,它们可能产生大小几乎相同但功能不同的转录本(最终产生蛋白质);以及(iv)编码序列有大的缺失的克隆,这解释了在脾脏、骨骼肌和心脏中看到的较小转录本。

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