Search bioRxiv⌕ Search

Biology subjects

Collier, K. A.

Publications and source records attributed to Collier, K. A..

2 recordsLinked to original sources

CNSigs: An R Package for the Identification of Copy Number Mutational Signatures

Copy number aberrations (CNAs) are gains and losses of large genomic segments present across most cancer types and are a hallmark of cancer genomic alterations. However, the processes underlying CNAs and characteristic patterns of CNAs are poorly understood. Bioinformatic advances have identified underlying single nucleotide variant mutational signatures resulting from distinct mutational processes, yet development of algorithms able to uncover similar signatures for CNAs remains less advanced. Using segmented data files from DNA sequencing, six copy number features are extracted for signature determination: segment size, breakpoints, copy number oscillation, changepoint size, copy number, and breakpoints per chromosome arm, along with ploidy. Mixed model approaches and non-negative matrix factorization are utilized to derive CNA signatures across cancer types. The full methodology was packaged in a publicly available, robust R package, CNSigs. To verify reproducibility, we derived five signatures from two independent breast cancer datasets (total n>3000), demonstrating high accuracy (average cosine similarity = 0.89). Pan-cancer application of CNSigs in TCGA resulted in derivation of 13 pan-cancer signatures which were significantly associated with disease-specific survival. Benchmarking CNSigs to two other CNA signature approaches within TCGA demonstrated non-overlapping signatures and favorable compute speed for CNSigs. We evaluated n=24 pairs of tumor and circulating tumor DNA (ctDNA) that demonstrated that CNSigs are detectable and reproducible via ctDNA, with significant association of CNSig11 with metastatic triple-negative breast cancer progression-free survival specifically for taxane chemotherapy. CNSigs association with immunophenotype was evaluated in low-grade glioma and CNSig3 was found to be highly prognostic yet complementary to immune features. The CNSigs allows researchers to easily analyze their own samples to derive copy number signatures and evaluate clinical associations. We demonstrate its potential application in ctDNA and association with treatment response. The development of this package allows further investigation of underlying processes that may be responsible for CNA fingerprints.

bioinformatics↗

Evidence of positive selection and a novel phylogeny among five subspecies of song sparrow (Melospiza melodia) in Alaska

Under local adaptation, populations evolve traits in response to the local environment. Isolated island populations often experience different selection pressures than their mainland counterparts, which enables the study of how phenotypes and genotypes respond to different selection regimes. We used a group of five phenotypically differentiated subspecies of song sparrow (Melospiza melodia) in Alaska to examine the effects of local adaptation. Song sparrows occur across southern Alaska from Attu Island in the western Aleutian Islands, to southeast Alaska. Moving from western to eastern Alaska these populations demonstrate striking body size differences (larger-to-smaller) and a change from a sedentary to a migratory/partially migratory life-history strategy. We examined the phenotypic attributes of these populations and used whole-genomic data to determine relationships and test candidate loci for evidence of selection. Phenotypic measurements of museum specimens (n = 227) quantified the dramatic size differences among these populations, with westernmost M. m. maxima being [~]1.6 times larger than easternmost M. m. rufina. Ultraconserved elements (UCEs) were extracted for phylogenetic reconstruction and candidate genes were extracted for selection testing. We analyzed 26 candidate genes for body size, migration and dispersal, color, and salt tolerance. Two of the candidate genes showed signs of positive selection: BCO1 (associated with plumage color) and KCTD21 (associated with dispersal). Phylogenetic analysis of UCEs showed M. m. maxima as sister to the other Alaska M. melodia subspecies. This suggests M. m. maxima colonized earliest, perhaps before the last glacial maximum, and that Alaska was later recolonized by ancestors of the remaining four subspecies.

evolutionary biology↗