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人类LU基因的组织及Lu(a)/Lu(b)血型多态性的分子基础。

Organization of the human LU gene and molecular basis of the Lu(a)/Lu(b) blood group polymorphism.

作者信息

El Nemer W, Rahuel C, Colin Y, Gane P, Cartron J P, Le Van Kim C

机构信息

INSERM U76, GIP-Institut National de la Transfusion Sanguine, Paris, France.

出版信息

Blood. 1997 Jun 15;89(12):4608-16.

PMID:9192786
Abstract

The Lutheran (Lu) blood group antigens and the B-cell adhesion molecule (B-CAM) epithelial cancer antigen are carried by recently cloned integral glycoproteins that belong to the Ig superfamily. We have previously shown that the Lu and B-CAM antigens are encoded by the same gene, LU, and that alternative splicing of the primary transcript most likely accounts for the presence of both antigens on two isoforms that differ by the length of their cytoplasmic tails. In the present report, we isolated the human LU gene by cloning a 20-kb HindIII fragment from Lu(a - b+) genomic DNA. The LU gene is organized into 15 exons distributed over 12.5 kb. Alternative splicing of intron 13 generates the 2.5- and 4.0-kb transcript spliceoforms encoding the long tail and the short tail Lu polypeptides, respectively. Sequencing of the major mRNA species (2.5 kb) amplified from human bone marrow, kidney, placenta, and skeletal muscle did not suggest the presence of tissue-specific Lu glycoprotein isoforms. The same transcription initiation point, located 22 bp upstream from the initiation codon, was characterized in several tissues. In agreement with the wide tissue distribution of the Lu messengers, the GC-rich proximal 5' flanking region of the LU gene does not contain TATA or CAAT boxes, but includes several potential binding sites for the ubiquitous Sp1 transcription factor. In addition, the distal 5' region, encompassing nucleotides -673 to -764, contains clustered binding sequences for the GATA, CACCC, and Ets transcription factors. Analysis of the coding sequences amplified from genomic DNA of Lu(a + b-) or Lu(a - b+) donors showed a single nucleotide change in exon 3 (A229G) that correlates with an Aci I restriction site polymorphism and results in a His77Arg amino-acid substitution. Polymerase chain reaction/restriction fragment length polymorphism analysis indicated that the A229G mutation is associated with the Lu(a)/Lu(b) blood group polymorphism. When expressed in Chinese hamster ovary (CHO) cells, Lu cDNAs carrying the A229 or the G229 produced cell surface proteins that reacted with anti-Lu(a) or anti-Lu(b) antibodies, respectively, showing that these nucleotides specify the Lu(a) and Lu(b) alleles of the Lutheran blood group locus. CHO cells expressing recombinant short-tail or long-tail Lu glycoproteins reacted as well with anti-Lu as with anti-B-CAM antibodies, providing the definitive proof that the Lu blood group and B-CAM antigens are carried by the same molecules.

摘要

路德(Lu)血型抗原和B细胞黏附分子(B-CAM)上皮癌抗原由最近克隆的属于免疫球蛋白超家族的整合糖蛋白携带。我们之前已经表明,Lu和B-CAM抗原由同一基因LU编码,并且初级转录本的可变剪接很可能是两种抗原存在于两种细胞质尾长度不同的异构体上的原因。在本报告中,我们通过从Lu(a - b+)基因组DNA中克隆一个20 kb的HindIII片段分离出了人类LU基因。LU基因由分布在12.5 kb上的15个外显子组成。内含子13的可变剪接分别产生编码长尾和短尾Lu多肽的2.5 kb和4.0 kb转录本剪接异构体。从人类骨髓、肾脏、胎盘和骨骼肌中扩增出的主要mRNA种类(2.5 kb)的测序结果并未表明存在组织特异性的Lu糖蛋白异构体。在几个组织中鉴定出相同的转录起始点,它位于起始密码子上游22 bp处。与Lu信使RNA广泛的组织分布一致,LU基因富含GC的近端5'侧翼区域不包含TATA或CAAT框,但包含几个普遍存在的Sp1转录因子的潜在结合位点。此外,包含核苷酸-673至-764的远端5'区域含有GATA、CACCC和Ets转录因子的成簇结合序列。对从Lu(a + b-)或Lu(a - b+)供体的基因组DNA中扩增出的编码序列的分析显示,外显子3中有一个单核苷酸变化(A229G),这与Aci I限制性位点多态性相关,并导致His77Arg氨基酸替代。聚合酶链反应/限制性片段长度多态性分析表明,A229G突变与Lu(a)/Lu(b)血型多态性相关。当在中国仓鼠卵巢(CHO)细胞中表达时,携带A229或G229的Lu cDNA分别产生与抗Lu(a)或抗Lu(b)抗体反应的细胞表面蛋白,表明这些核苷酸确定了路德血型位点的Lu(a)和Lu(b)等位基因。表达重组短尾或长尾Lu糖蛋白的CHO细胞与抗Lu抗体和抗B-CAM抗体的反应相同,这为Lu血型抗原和B-CAM抗原由相同分子携带提供了确凿证据。

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