Lightning-fast adaptive immune receptor similarity search by symmetric deletion lookup
An individual's adaptive immune receptor (AIR) repertoire records immune history due to the exquisite antigen specificity of AIRs. Reading this record requires computational approaches for inferring receptor function from sequence, as the diversity of possible receptor-antigen pairs vastly outstrips experimental knowledge. Identification of AIRs with similar sequence and thus putatively similar function is a common performance bottleneck in these approaches. Here, we benchmark the time complexity of five different algorithmic approaches to radius-based search for Levenshtein neighbors. We show that a symmetric deletion lookup approach, originally proposed for spell-checking, is particularly scalable. We then introduce XTNeighbor, a variant of this algorithm that can be massively parallelized on GPUs. For one million input sequences, XTNeighbor identifies all sequence neighbors that differ by up to two edits in seconds on commodity hardware, orders of magnitude faster than existing approaches. We also demonstrate how symmetric deletion lookup can speed up search with more complex sequence-similarity metrics such as TCRdist. Our contribution is poised to greatly speed up existing analysis pipelines and enable processing of large-scale immunosequencing data without downsampling.
Code (1)
Tasks
DiversitySpecificityMethods 이 논문이 사용한 방법론
Similar Papers 제목 키워드 기반
Computational strategies for dissecting the high-dimensional complexity of adaptive immune repertoires
The adaptive immune system recognizes antigens via an immense array of antigen-binding antibodies and T-cell receptors, the immune repertoire. The interrogation of immune repertoires is of high relevance for understandin…
DiversitySpecificityLearning immune receptor representations with protein language models
Protein language models (PLMs) learn contextual representations from protein sequences and are profoundly impacting various scientific disciplines spanning protein design, drug discovery, and structural predictions. One …
DiversityDrug DiscoveryProtein DesignSpecificityDiversity in immunogenomics: the value and the challenge
With the advent of high-throughput sequencing technologies, the fields of immunogenomics and adaptive immune receptor repertoire research are facing both opportunities and challenges. Adaptive immune receptor repertoire …
DiversityThe Bayesian optimist's guide to adaptive immune receptor repertoire analysis
Probabilistic modeling is fundamental to the statistical analysis of complex data. In addition to forming a coherent description of the data-generating process, probabilistic models enable parameter inference about given…
Variability in the local and global composition of human T-cell receptor repertoires during thymic development across cell types and individuals
The adaptive immune response relies on T cells that combine phenotypic specialization with diversity of T cell receptors (TCRs) to recognize a wide range of pathogens. TCRs are acquired and selected during T cell maturat…
Diversity