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Natural Mutagenesis of Human Genomes by Endogenous Retrotransposons
Author(s) -
Rebecca C. Iskow,
Michael T. McCabe,
Ryan E. Mills,
Spencer Torene,
W. Stephen Pittard,
Andrew F. Neuwald,
Erwin G. Van Meir,
Paula M. Vertino,
Scott E. Devine
Publication year - 2010
Publication title -
cell
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 26.304
H-Index - 776
eISSN - 1097-4172
pISSN - 0092-8674
DOI - 10.1016/j.cell.2010.05.020
Subject(s) - retrotransposon , biology , genome , human genome , mobile genetic elements , genetics , germline , transposable element , mutagenesis , insertional mutagenesis , endogenous retrovirus , somatic cell , genome evolution , alu element , computational biology , gene , mutation
Two abundant classes of mobile elements, namely Alu and L1 elements, continue to generate new retrotransposon insertions in human genomes. Estimates suggest that these elements have generated millions of new germline insertions in individual human genomes worldwide. Unfortunately, current technologies are not capable of detecting most of these young insertions, and the true extent of germline mutagenesis by endogenous human retrotransposons has been difficult to examine. Here, we describe technologies for detecting these young retrotransposon insertions and demonstrate that such insertions indeed are abundant in human populations. We also found that new somatic L1 insertions occur at high frequencies in human lung cancer genomes. Genome-wide analysis suggests that altered DNA methylation may be responsible for the high levels of L1 mobilization observed in these tumors. Our data indicate that transposon-mediated mutagenesis is extensive in human genomes and is likely to have a major impact on human biology and diseases.

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