Cano P, Fan B, Stass S
University of Maryland at Baltimore, Department of Pathology, UMMS Clinical Laboratories, 22 S. Greene St., Room N2W50A, Baltimore, MD 21201-1544, USA.
Immunogenetics. 1998 Oct;48(5):324-34. doi: 10.1007/s002510050439.
HLA class I alleles are studied by representing them in a metric space where each dimension corresponds to each one of the amino acid positions. Their similarity in reference to their ability to present peptides to T cells is then evaluated by calculating the correlation matrix between the amino-acid-composition tables (or binding affinity tables) for the sets of peptides presented by each allele. This correlation matrix is considered an empirical similarity matrix between HLA alleles, and is modeled in terms of possible structures defined in the metric space of HLA class I amino acid sequences. These geometric structures are adequate models of the peptide-binding data currently available. The following clusters of HLA class I molecules are identified in reference to their ability to present peptides: Cluster I) HLA-A3/ HLA-A11/ HLA-A31/ HLA-A33/ HLA-A68; Cluster II) HLA-B35/ HLA-B51/ HLA-B53/ HLA-B54/ HLA-B7; and Cluster III) HLA-A29/ HLA-B61/HLA-B44; the last cluster showing possible similarities between alleles from different loci. In modeling these natural clusters, the geometric structures with more predictive power confirm the importance of those positions in the peptide-binding groove, particularly those in the B pocket. In addition, other positions (46, 79, 113, 131, 144, and 177) appeared to bear some relevance in determining which peptides can be presented by which HLA alleles.
通过在一个度量空间中表示HLA I类等位基因来对其进行研究,其中每个维度对应于每个氨基酸位置。然后,通过计算每个等位基因所呈递肽段集合的氨基酸组成表(或结合亲和力表)之间的相关矩阵,来评估它们在向T细胞呈递肽段能力方面的相似性。这个相关矩阵被视为HLA等位基因之间的经验相似性矩阵,并根据HLA I类氨基酸序列度量空间中定义的可能结构进行建模。这些几何结构是目前可用的肽结合数据的适当模型。根据其呈递肽段的能力,鉴定出以下HLA I类分子簇:簇I)HLA-A3/HLA-A11/HLA-A31/HLA-A33/HLA-A68;簇II)HLA-B35/HLA-B51/HLA-B53/HLA-B54/HLA-B7;以及簇III)HLA-A29/HLA-B61/HLA-B44;最后一个簇显示了来自不同位点的等位基因之间可能存在的相似性。在对这些自然簇进行建模时,具有更强预测能力的几何结构证实了肽结合凹槽中那些位置的重要性,特别是B口袋中的位置。此外,其他位置(46、79、113、131、144和177)在确定哪些肽段可被哪些HLA等位基因呈递方面似乎也具有一定相关性。