Senju S, Kimura A, Yasunami M, Kamikawaji N, Yoshizumi H, Nishimura Y, Sasazuki T
Department of Genetics, Kyushu University, Fukuoka, Japan.
Immunogenetics. 1992;36(5):319-25. doi: 10.1007/BF00215661.
The beta chain of the HLA-DQ molecule is shorter by eight amino acid residues than other major histocompatibility complex class II beta chains due to elimination of the fifth exon coding for part of the cytoplasmic domain. This elimination is caused by one base substitution in the splice acceptor site of the exon. We found that two HLA-DQB1 alleles, DQB10503 and DQB10601, did not have this substitution, and the exon was utilized in these two alleles. However, two forms of HLA-DQB mRNA, with or without exon 5, were generated in Epstein-Barr virus-transformed cell lines homozygous for DQB10503 or DQB10601, indicating alternative mRNA splicing. The alternative splicing of DQB1*0601 mRNA was also found in peripheral blood lymphocytes and L cell transfectants. To investigate the functional relevance of the allele-specific long cytoplasmic tail of HLA-DQ beta chain, we developed three types of L cell transfectants expressing exclusively the HLA-DQw6 molecules with short cytoplasmic tail, long cytoplasmic tail, or both forms of the beta chain, and used them as antigen presenting cells for streptococcal cell wall antigen-specific T cell lines. These three types of transfectants could function almost equally well as antigen presenting cells. It was thus demonstrated that both forms of HLA-DQ beta chain, with or without eight amino acid residues coded for by the exon 5, can be associated with the HLA-DQ alpha chain, be expressed on the cell surface, and function as restriction molecules in antigen recognition by the CD4+ T cells.
由于编码部分胞质结构域的第五外显子被消除,HLA - DQ分子的β链比其他主要组织相容性复合体II类β链短八个氨基酸残基。这种消除是由外显子剪接受体位点的一个碱基替换引起的。我们发现两个HLA - DQB1等位基因,DQB10503和DQB10601,没有这种替换,并且该外显子在这两个等位基因中被利用。然而,在DQB10503或DQB10601纯合的爱泼斯坦 - 巴尔病毒转化细胞系中产生了两种形式的HLA - DQB mRNA,有或没有外显子5,这表明存在可变mRNA剪接。在外周血淋巴细胞和L细胞转染子中也发现了DQB1*0601 mRNA的可变剪接。为了研究HLA - DQβ链等位基因特异性长胞质尾的功能相关性,我们构建了三种类型的L细胞转染子,它们分别只表达具有短胞质尾、长胞质尾或两种形式β链的HLA - DQw6分子,并将它们用作针对链球菌细胞壁抗原特异性T细胞系的抗原呈递细胞。这三种类型的转染子作为抗原呈递细胞的功能几乎相同。因此证明,无论有无外显子5编码的八个氨基酸残基,两种形式的HLA - DQβ链都可以与HLA - DQα链结合,在细胞表面表达,并作为CD4 + T细胞抗原识别中的限制分子发挥作用。