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用于基于HLA-DPB1测序分型的Sequenase序列图谱。

Sequenase sequence profiles used for HLA-DPB1 sequencing-based typing.

作者信息

Rozemuller E H, Chadwick B, Charron D, Baxter-Lowe L A, Eliaou J F, Johnston-Dow L, Tilanus M G

机构信息

Department of Pathology, University Hospital Utrecht, The Netherlands.

出版信息

Tissue Antigens. 1996 Jan;47(1):72-9. doi: 10.1111/j.1399-0039.1996.tb02516.x.

Abstract

Sequencing-based HLA typing (SBT) is a PCR based high resolution HLA typing method in which polymorphic regions of the gene are sequenced and directly used for typing. Currently, for class II SBT, alleles are identified by comparison of the exon 2 sequence with their corresponding allele sequence library. Routine SBT requires reliable identification of heterozygosity, and automated assignment of the alleles. In sequencing strategies different enzymes can be used for primer extension. The most characteristic difference between sequences obtained by two protocols using Sequenaseregistered, or Taq-cycle sequencing, respectively, is a difference in incorporation of nucleotides in the primer extension leading to different sequence profiles. In Taq-cycling sequencing variable nucleotide incorporation results in irregular, but reproducible peak patterns, whereas Sequenase incorporates nucleotides in nearly equal amounts, resulting in more even peak patterns. In a previously published multi-center study we evaluated HLA-DPB1 SBT using Taq-cycle sequencing, and showed that typing can reliably be performed, considering the specific sequence profiles. In this study the applicability of Sequenase for HLA-DPB1 SBT was tested. A panel of samples were typed by SBT at five test sites which participate in the Sequencing Based Typing component of the 12th International Histocompatibility Workshop. The panel represents the existing polymorphism at all known polymorphic positions of exon 2, both in homozygous and heterozygous combinations. The assignment of homozygosity and heterozygosity was validated by Multi-Sequence Analysis, performing cluster analysis of chromatographic data of all sequences at each position. Sequence characteristics were examined and considered for appropriate assignment. Data reveals that Sequenase sequencing can also reliably be used for HLA-DPB1 typing.

摘要

基于测序的HLA分型(SBT)是一种基于PCR的高分辨率HLA分型方法,该方法对基因的多态性区域进行测序并直接用于分型。目前,对于II类SBT,通过将外显子2序列与其相应的等位基因序列库进行比较来鉴定等位基因。常规SBT需要可靠地鉴定杂合性,并自动分配等位基因。在测序策略中,不同的酶可用于引物延伸。分别使用Sequenaseregistered或Taq循环测序的两种方案获得的序列之间最显著的差异在于引物延伸中核苷酸的掺入差异,从而导致不同的序列图谱。在Taq循环测序中,可变核苷酸掺入导致不规则但可重复的峰型,而Sequenase以几乎相等的量掺入核苷酸,导致更均匀的峰型。在先前发表的一项多中心研究中,我们使用Taq循环测序评估了HLA-DPB1 SBT,并表明考虑到特定的序列图谱,可以可靠地进行分型。在本研究中,测试了Sequenase用于HLA-DPB1 SBT的适用性。一组样本在五个参与第12届国际组织相容性研讨会基于测序的分型部分的测试位点进行SBT分型。该样本组代表外显子2所有已知多态性位置上的现有多态性,包括纯合和杂合组合。通过多序列分析验证纯合性和杂合性的分配,对每个位置的所有序列的色谱数据进行聚类分析。检查序列特征并考虑进行适当的分配。数据表明,Sequenase测序也可可靠地用于HLA-DPB1分型。

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