Nucleosome structure increases CPD lesion formation at outward facing nucleosomes (black bolts) while decreasing NER activity near the dyad axis. Both processes combine to produce the 10bp oscillation of mutation across nucleosomes in melanoma as well as an overall curvature in mutation density across the translational setting of the nucleosome.</p
Deciphering the multitude of epigenomic and genomic factors that influence the mutation rate is an a...
(A) DNA wraps around the nucleosome histones (shown as blue circles), with the least accessible regi...
© 2019 The Author(s). Published by Oxford University Press on behalf of Nucleic Acids Research. We r...
Ultraviolet (UV) light-induced mutations are unevenly distributed across skin cancer genomes, but th...
Ultraviolet (UV) light-induced mutations are unevenly distributed across skin cancer genomes, but th...
Ultraviolet radiation-induced DNA mutations are a primary environmental driver of melanoma. The reas...
(A) The “in cells” CPD lesion counts normalized to in vitro lesion counts (CPD-seq by CPD-seq; also ...
Sequencing of whole cancer genomes has revealed an abundance of recurrent mutations in gene-regulato...
Although BRAF V600 mutations in melanocytic tumors are not UV-signature mutations, it is plausible t...
Ultraviolet radiation-induced DNA mutations are a primary environmental driver of melanoma. The reas...
Sequencing of whole cancer genomes has revealed an abundance of recurrent mutations in gene-regulato...
The melanoma genome is dominated by ultraviolet radiation (UVR)-induced mutations. Their relevance i...
The ultraviolet radiation (UVR) component of sunlight is the major environmental risk factor for mel...
<div><p>Deciphering the multitude of epigenomic and genomic factors that influence the mutation rate...
Somatic mutations are the driving force of cancer genome evolution. The rate of somatic mutations ap...
Deciphering the multitude of epigenomic and genomic factors that influence the mutation rate is an a...
(A) DNA wraps around the nucleosome histones (shown as blue circles), with the least accessible regi...
© 2019 The Author(s). Published by Oxford University Press on behalf of Nucleic Acids Research. We r...
Ultraviolet (UV) light-induced mutations are unevenly distributed across skin cancer genomes, but th...
Ultraviolet (UV) light-induced mutations are unevenly distributed across skin cancer genomes, but th...
Ultraviolet radiation-induced DNA mutations are a primary environmental driver of melanoma. The reas...
(A) The “in cells” CPD lesion counts normalized to in vitro lesion counts (CPD-seq by CPD-seq; also ...
Sequencing of whole cancer genomes has revealed an abundance of recurrent mutations in gene-regulato...
Although BRAF V600 mutations in melanocytic tumors are not UV-signature mutations, it is plausible t...
Ultraviolet radiation-induced DNA mutations are a primary environmental driver of melanoma. The reas...
Sequencing of whole cancer genomes has revealed an abundance of recurrent mutations in gene-regulato...
The melanoma genome is dominated by ultraviolet radiation (UVR)-induced mutations. Their relevance i...
The ultraviolet radiation (UVR) component of sunlight is the major environmental risk factor for mel...
<div><p>Deciphering the multitude of epigenomic and genomic factors that influence the mutation rate...
Somatic mutations are the driving force of cancer genome evolution. The rate of somatic mutations ap...
Deciphering the multitude of epigenomic and genomic factors that influence the mutation rate is an a...
(A) DNA wraps around the nucleosome histones (shown as blue circles), with the least accessible regi...
© 2019 The Author(s). Published by Oxford University Press on behalf of Nucleic Acids Research. We r...