Finger L R, Pu J, Wasserman R, Vibhakar R, Louie E, Hardy R R, Burrows P D, Billips L G
Department of Medicine, New York Medical College, Elmsford 10523, USA.
Gene. 1997 Sep 15;197(1-2):177-87. doi: 10.1016/s0378-1119(97)00260-6.
We report the complete cDNA sequence and the genomic structure of the human PD-1 homologue. An analysis of the expression pattern of the human PD-1 gene (hPD-1) and the murine PD-1 gene (mPD-1) in developing bone marrow B-lineage cells was also undertaken. The full length hPD-1 cDNA is 2106 nucleotides long and encodes a predicted protein of 288 amino acid residues. The hPD-1 and mPD-1 genes share 70% homology at the nucleotide level and 60% homology at the amino acid level. Four potential sites for N-linked glycosylation are conserved, as are a stretch of amino acids between two cysteine residues resembling a V-set immunoglobulin domain, and another region containing a motif similar to an immunoreceptor tyrosine-based inhibitory motif. Isolation of the genomic locus of the hPD-1 gene reveals that the gene is composed of five exons located on human chromosome 2 at band q37. The 5' flanking region lacks TATA and CAAT cis-acting elements, but includes a number of potential transcription factor binding sites and a dominant transcription start site. The mPD-1 gene was preferentially expressed in pro-B cells from murine adult bone marrow. Although hPD-1 was not preferentially expressed in pro-B cells from human fetal bone marrow, treatment of isolated pro-B cells with interleukin-7 resulted in a dramatic increase in expression. These data suggest that PD-1 may play a role in B-cell differentiation during the pro-B cell stage.
我们报道了人类PD-1同源物的完整cDNA序列和基因组结构。我们还对人类PD-1基因(hPD-1)和小鼠PD-1基因(mPD-1)在发育中的骨髓B系细胞中的表达模式进行了分析。全长hPD-1 cDNA长2106个核苷酸,编码一个预测的由288个氨基酸残基组成的蛋白质。hPD-1和mPD-1基因在核苷酸水平上有70%的同源性,在氨基酸水平上有60%的同源性。四个潜在的N-糖基化位点是保守的,两个半胱氨酸残基之间的一段氨基酸类似于V-set免疫球蛋白结构域,另一个区域含有类似于基于免疫受体酪氨酸的抑制基序的基序。hPD-1基因基因组位点的分离显示该基因由位于人类2号染色体q37带的五个外显子组成。5'侧翼区域缺乏TATA和CAAT顺式作用元件,但包括一些潜在的转录因子结合位点和一个主要的转录起始位点。mPD-1基因在成年小鼠骨髓的前B细胞中优先表达。虽然hPD-1在人类胎儿骨髓的前B细胞中不是优先表达,但用白细胞介素-7处理分离的前B细胞会导致表达显著增加。这些数据表明PD-1可能在B细胞分化的前B细胞阶段发挥作用。