Elsner Holger-Andreas, Horn Peter A, Schoenemann Constanze, Altermann Wolfgang W, Blasczyk Rainer
Labor Dres. Fenner & Partner, Bergstr. 14, 20095 Hamburg, Germany.
Immunogenetics. 2006 Nov;58(11):929-31. doi: 10.1007/s00251-006-0158-6. Epub 2006 Oct 6.
The identification of expression variants is a challenge in HLA diagnostics. We here describe the identification of the novel allele HLA-B3565Q. The serological HLA class I type, as determined by a lymphocytotoxicity test, was A11,24; B38; Bw4; Cw-; whereas PCR-sequence-specific primers resulted in A11,24, B35,38; Cw12, thus suggesting the presence of a nonexpressed B35 allele. To clarify the lack of serological HLA-B35 reactivity, exons 2 and 3 were sequenced following haplotype-specific amplification. At position 564 from the beginning of the coding region (exon 3), a transversion (C-->G) was observed, which, at the amino acid level, results in a substitution from cysteine to tryptophane at position 164 of the mature polypeptide. Because this position is essential for the formation of a disulfide bond linking the cysteine residues at positions 101 and 164, which is strongly conserved in functional class I molecules of vertebrates, the disruption of this bond is very likely to be the reason for the lack of serological detectability. We later found the same novel allele in a second unrelated individual, of whom we were able to establish a lymphoblastoid cell line (B-LCL). Serological testing of this B-LCL indicated a very low aberrant expression of HLA-B3565Q, which cannot be expected to be detected by standard serology techniques.
在HLA诊断中,鉴定表达变异体是一项挑战。我们在此描述新型等位基因HLA - B3565Q的鉴定过程。通过淋巴细胞毒性试验确定的血清学HLA I类类型为A11,24;B38;Bw4;Cw -;而PCR序列特异性引物检测结果为A11,24,B35,38;Cw12,这表明存在一个未表达的B35等位基因。为了阐明缺乏血清学HLA - B35反应性的原因,在单倍型特异性扩增后对第2和第3外显子进行了测序。在编码区(外显子3)起始位置的第564位,观察到一个颠换(C→G),在氨基酸水平上,这导致成熟多肽第164位的半胱氨酸被色氨酸取代。由于该位置对于连接第101和164位半胱氨酸残基的二硫键形成至关重要,而这种二硫键在脊椎动物功能性I类分子中高度保守,因此该键的破坏很可能是缺乏血清学可检测性的原因。我们后来在另一名无关个体中发现了相同的新型等位基因,并成功建立了该个体的淋巴母细胞系(B - LCL)。对该B - LCL的血清学检测表明HLA - B3565Q的异常表达非常低,标准血清学技术预计无法检测到这种表达。