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Mobile DNA
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April 29, 2017
Insertion and deletion polymorphisms of the ancient <i>AluS</i> family in the human genome
Maria S Kryatova, Jared P Steranka, Kathleen H Burns, et al.
Genome Biology
|
July 29, 2020
Polymorphic mobile element insertions contribute to gene expression and alternative splicing in human tissues
Xiaolong Cao, Yeting Zhang, Lindsay M Payer, et al.
Genome Research
|
November 20, 2021
<i>Alu</i> insertion variants alter gene transcript levels
Lindsay M Payer, Jared P Steranka, Maria S Kryatova, et al.
Nucleic Acids Research
|
November 13, 2018
Alu insertion variants alter mRNA splicing
Lindsay M Payer, Jared P Steranka, Daniel Ardeljan, et al.
Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences
|
February 21, 2020
Human transposon insertion profiling by sequencing (TIPseq) to map LINE-1 insertions in single cells
Wilson McKerrow, Zuojian Tang, Jared P Steranka, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
May 4, 2017
Structural variants caused by <i>Alu</i> insertions are associated with risks for many human diseases
Lindsay M Payer, Jared P Steranka, Wan Rou Yang, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
January 19, 2017
Human transposon insertion profiling: Analysis, visualization and identification of somatic LINE-1 insertions in ovarian cancer
Zuojian Tang, Jared P Steranka, Sisi Ma, et al.
Plos One
|
June 24, 2011
Identification of replication competent murine gammaretroviruses in commonly used prostate cancer cell lines
Karen Sandell Sfanos, Amanda L Aloia, Jessica L Hicks, et al.
Cell
|
July 7, 2010
Mobile interspersed repeats are major structural variants in the human genome
Cheng Ran Lisa Huang, Anna M Schneider, Yunqi Lu, et al.
Mobile DNA
|
March 23, 2019
Transposon insertion profiling by sequencing (TIPseq) for mapping LINE-1 insertions in the human genome
Jared P Steranka, Zuojian Tang, Mark Grivainis, et al.
Page
of 2
Search research articles
Search
Showing results (1-10 of 14) with videos related to
Sort By:
Page
of 2
Mobile DNA
|
April 29, 2017
Insertion and deletion polymorphisms of the ancient <i>AluS</i> family in the human genome
Maria S Kryatova, Jared P Steranka, Kathleen H Burns, et al.
Genome Biology
|
July 29, 2020
Polymorphic mobile element insertions contribute to gene expression and alternative splicing in human tissues
Xiaolong Cao, Yeting Zhang, Lindsay M Payer, et al.
Genome Research
|
November 20, 2021
<i>Alu</i> insertion variants alter gene transcript levels
Lindsay M Payer, Jared P Steranka, Maria S Kryatova, et al.
Nucleic Acids Research
|
November 13, 2018
Alu insertion variants alter mRNA splicing
Lindsay M Payer, Jared P Steranka, Daniel Ardeljan, et al.
Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences
|
February 21, 2020
Human transposon insertion profiling by sequencing (TIPseq) to map LINE-1 insertions in single cells
Wilson McKerrow, Zuojian Tang, Jared P Steranka, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
May 4, 2017
Structural variants caused by <i>Alu</i> insertions are associated with risks for many human diseases
Lindsay M Payer, Jared P Steranka, Wan Rou Yang, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
January 19, 2017
Human transposon insertion profiling: Analysis, visualization and identification of somatic LINE-1 insertions in ovarian cancer
Zuojian Tang, Jared P Steranka, Sisi Ma, et al.
Plos One
|
June 24, 2011
Identification of replication competent murine gammaretroviruses in commonly used prostate cancer cell lines
Karen Sandell Sfanos, Amanda L Aloia, Jessica L Hicks, et al.
Cell
|
July 7, 2010
Mobile interspersed repeats are major structural variants in the human genome
Cheng Ran Lisa Huang, Anna M Schneider, Yunqi Lu, et al.
Mobile DNA
|
March 23, 2019
Transposon insertion profiling by sequencing (TIPseq) for mapping LINE-1 insertions in the human genome
Jared P Steranka, Zuojian Tang, Mark Grivainis, et al.
Page
of 2