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Fraser Soares

Showing results (21-30 of 35) with videos related to

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Nature Communications|March 30, 2023
MYC reshapes CTCF-mediated chromatin architecture in prostate cancerZhao Wei, Song Wang, Yaning Xu, et al.
Nature Immunology|November 10, 2009
Nod1 and Nod2 direct autophagy by recruiting ATG16L1 to the plasma membrane at the site of bacterial entryLeonardo H Travassos, Leticia A M Carneiro, Mahendrasingh Ramjeet, et al.
Gastroenterology|December 30, 2021
N6-Methyladenosine Reader YTHDF1 Promotes ARHGEF2 Translation and RhoA Signaling in Colorectal CancerShiyan Wang, Shanshan Gao, Yong Zeng, et al.
Nature Communications|October 30, 2024
Inhibiting EZH2 targets atypical teratoid rhabdoid tumor by triggering viral mimicry via both RNA and DNA sensing pathwaysShengrui Feng, Sajid A Marhon, Dustin J Sokolowski, et al.
Nucleic Acids Research|March 17, 2023
Excessive transcription-replication conflicts are a vulnerability of BRCA1-mutant cancersParasvi S Patel, Arash Algouneh, Rehna Krishnan, et al.
Cell|July 24, 2018
Risk SNP-Mediated Promoter-Enhancer Switching Drives Prostate Cancer through lncRNA PCAT19Junjie Tony Hua, Musaddeque Ahmed, Haiyang Guo, et al.
Cancer Research|September 17, 2017
LSD1-Mediated Epigenetic Reprogramming Drives CENPE Expression and Prostate Cancer ProgressionYi Liang, Musaddeque Ahmed, Haiyang Guo, et al.
Nature Genetics|August 16, 2016
Modulation of long noncoding RNAs by risk SNPs underlying genetic predispositions to prostate cancerHaiyang Guo, Musaddeque Ahmed, Fan Zhang, et al.
Cell|January 8, 2021
Colorectal Cancer Cells Enter a Diapause-like DTP State to Survive ChemotherapySumaiyah K Rehman, Jennifer Haynes, Evelyne Collignon, et al.
Nature Communications|March 20, 2021
CRISPRi screens reveal a DNA methylation-mediated 3D genome dependent causal mechanism in prostate cancerMusaddeque Ahmed, Fraser Soares, Ji-Han Xia, et al.
Pageof 4

Showing results (21-30 of 35) with videos related to

Sort By:
Pageof 4
Nature Communications|March 30, 2023
MYC reshapes CTCF-mediated chromatin architecture in prostate cancerZhao Wei, Song Wang, Yaning Xu, et al.
Nature Immunology|November 10, 2009
Nod1 and Nod2 direct autophagy by recruiting ATG16L1 to the plasma membrane at the site of bacterial entryLeonardo H Travassos, Leticia A M Carneiro, Mahendrasingh Ramjeet, et al.
Gastroenterology|December 30, 2021
N6-Methyladenosine Reader YTHDF1 Promotes ARHGEF2 Translation and RhoA Signaling in Colorectal CancerShiyan Wang, Shanshan Gao, Yong Zeng, et al.
Nature Communications|October 30, 2024
Inhibiting EZH2 targets atypical teratoid rhabdoid tumor by triggering viral mimicry via both RNA and DNA sensing pathwaysShengrui Feng, Sajid A Marhon, Dustin J Sokolowski, et al.
Nucleic Acids Research|March 17, 2023
Excessive transcription-replication conflicts are a vulnerability of BRCA1-mutant cancersParasvi S Patel, Arash Algouneh, Rehna Krishnan, et al.
Cell|July 24, 2018
Risk SNP-Mediated Promoter-Enhancer Switching Drives Prostate Cancer through lncRNA PCAT19Junjie Tony Hua, Musaddeque Ahmed, Haiyang Guo, et al.
Cancer Research|September 17, 2017
LSD1-Mediated Epigenetic Reprogramming Drives CENPE Expression and Prostate Cancer ProgressionYi Liang, Musaddeque Ahmed, Haiyang Guo, et al.
Nature Genetics|August 16, 2016
Modulation of long noncoding RNAs by risk SNPs underlying genetic predispositions to prostate cancerHaiyang Guo, Musaddeque Ahmed, Fan Zhang, et al.
Cell|January 8, 2021
Colorectal Cancer Cells Enter a Diapause-like DTP State to Survive ChemotherapySumaiyah K Rehman, Jennifer Haynes, Evelyne Collignon, et al.
Nature Communications|March 20, 2021
CRISPRi screens reveal a DNA methylation-mediated 3D genome dependent causal mechanism in prostate cancerMusaddeque Ahmed, Fraser Soares, Ji-Han Xia, et al.
Pageof 4