Genetic and structural analyses of affinity maturation in the humoral response to HIV‐1

亲和力成熟 生物 抗体 艾滋病疫苗 B细胞 表型 体液免疫 计算生物学 免疫系统 突变 免疫学 遗传学 病毒学 基因 疫苗试验
作者
Thomas B. Kepler,Kevin Wiehe
出处
期刊:Immunological Reviews [Wiley]
卷期号:275 (1): 129-144 被引量:24
标识
DOI:10.1111/imr.12513
摘要

Summary Most broadly neutralizing antibodies ( BNA bs) elicited in response to HIV ‐1 infection are extraordinarily mutated. One goal of HIV ‐1 vaccine development is to induce antibodies that are similar to the most potent and broad BNA bs isolated from infected subjects. The most effective BNA bs have very high mutation frequencies, indicative of the long periods of continual activation necessary to acquire the BNA b phenotype through affinity maturation. Understanding the mutational patterns that define the maturation pathways in BNA b development is critical to vaccine design efforts to recapitulate through vaccination the successful routes to neutralization breadth and potency that have occurred in natural infection. Studying the mutational changes that occur during affinity maturation, however, requires accurate partitioning of sequence data into B‐cell clones and identification of the starting point of a B‐cell clonal lineage, the initial V(D)J rearrangement. Here, we describe the statistical framework we have used to perform these tasks. Through the recent advancement of these and similar computational methods, many HIV ‐1 ancestral antibodies have been inferred, synthesized and their structures determined. This has allowed, for the first time, the investigation of the structural mechanisms underlying the affinity maturation process in HIV ‐1 antibody development. Here, we review what has been learned from this atomic‐level structural characterization of affinity maturation in HIV ‐1 antibodies and the implications for vaccine design.
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