111 Publications (Page 1 of 5)
2021
A single-cell atlas of the healthy breast tissues reveals clinically relevant clusters of breast epithelial cells.Bhat-Nakshatri, Poornima⋅Bhat-Nakshatri, Poornima⋅Bhat-Nakshatri, Poornima⋅Bhat-Nakshatri, Poornima⋅Bhat-Nakshatri, Poornima⋅Gao, Hongyu⋅Gao, Hongyu⋅Gao, Hongyu⋅Gao, Hongyu⋅Gao, Hongyu⋅Sheng, Liu⋅Sheng, Liu⋅Sheng, Liu⋅Sheng, Liu⋅Sheng, Liu⋅McGuire, Patrick C⋅McGuire, Patrick C⋅McGuire, Patrick C⋅McGuire, Patrick C⋅McGuire, Patrick C⋅Xuei, Xiaoling⋅Xuei, Xiaoling⋅Xuei, Xiaoling⋅Xuei, Xiaoling⋅Xuei, Xiaoling⋅Wan, Jun⋅Wan, Jun⋅Wan, Jun⋅Wan, Jun⋅Wan, Jun⋅Liu, Yunlong⋅Liu, Yunlong⋅Liu, Yunlong⋅Liu, Yunlong⋅Liu, Yunlong⋅Althouse, Sandra K⋅Althouse, Sandra K⋅Althouse, Sandra K⋅Althouse, Sandra K⋅Althouse, Sandra K⋅Colter, Austyn⋅Colter, Austyn⋅Colter, Austyn⋅Colter, Austyn⋅Colter, Austyn⋅Sandusky, George⋅Sandusky, George⋅Sandusky, George⋅Sandusky, George⋅Sandusky, George⋅Storniolo, Anna Maria⋅Storniolo, Anna Maria⋅Storniolo, Anna Maria⋅Storniolo, Anna Maria⋅Storniolo, Anna Maria⋅Nakshatri, Harikrishna⋅Nakshatri, Harikrishna⋅Nakshatri, Harikrishna⋅Nakshatri, Harikrishna and Nakshatri, HarikrishnaCell reports. Medicine, vol. 2, (no. 3), pp. 100219, March 16, 2021.
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Atractylenolide I enhances responsiveness to immune checkpoint blockade therapy by activating tumor antigen presentation.Xu, Hanchen⋅Xu, Hanchen⋅Xu, Hanchen⋅Xu, Hanchen⋅Xu, H.⋅Van der Jeught, Kevin⋅Van Der Jeught, K.⋅Van der Jeught, Kevin⋅Van der Jeught, Kevin⋅Van der Jeught, Kevin⋅Zhou, Zhuolong⋅Zhou, Zhuolong⋅Zhou, Zhuolong⋅Zhou, Z.⋅Zhou, Zhuolong⋅Zhang, Lu⋅Zhang, L.⋅Zhang, Lu⋅Zhang, Lu⋅Zhang, Lu⋅Yu, T.⋅Yu, Tao⋅Yu, Tao⋅Yu, Tao⋅Yu, Tao⋅Sun, Yifan⋅Sun, Yifan⋅Sun, Yifan⋅Sun, Y.⋅Sun, Yifan⋅Li, Yujing⋅Li, Yujing⋅Li, Y.⋅Li, Yujing⋅Li, Yujing⋅Wan, Changlin⋅Wan, Changlin⋅Wan, C.⋅Wan, Changlin⋅Wan, Changlin⋅So, K.M.⋅So, Ka M⋅So, Kaman⋅So, Kaman⋅So, Ka M⋅Liu, Degang⋅Liu, D.⋅Liu, Degang⋅Liu, Degang⋅Liu, Degang⋅Frieden, M.⋅Frieden, Michael⋅Frieden, Michael⋅Frieden, Michael⋅Frieden, Michael⋅Fang, Yuanzhang⋅Fang, Yuanzhang⋅Fang, Yuanzhang⋅Fang, Yuanzhang⋅Fang, Y.⋅Mosley, Amber L⋅Mosley, A.L.⋅Mosley, Amber L⋅Mosley, Amber L⋅Mosley, Amber L⋅He, Xiaoming⋅He, X.⋅He, Xiaoming⋅He, Xiaoming⋅He, Xiaoming⋅Zhang, Xinna⋅Zhang, Xinna⋅Zhang, Xinna⋅Zhang, X.⋅Zhang, Xinna⋅Sandusky, George E⋅Sandusky, G.E.⋅Sandusky, George E⋅Sandusky, George E⋅Sandusky, George E⋅Liu, Y.⋅Liu, Yunlong⋅Liu, Yunlong⋅Liu, Yunlong⋅Liu, Yunlong⋅Meroueh, S.O.⋅Meroueh, Samy O⋅Meroueh, Samy O⋅Meroueh, Samy O⋅Meroueh, Samy O⋅Zhang, C.⋅Zhang, Chi⋅Zhang, Chi⋅Zhang, Chi⋅Zhang, Chi⋅Wijeratne, Aruna B⋅Wijeratne, Aruna B⋅Wijeratne, Aruna B⋅Wijeratne, A.B.⋅Wijeratne, Aruna B⋅Huang, C.⋅Huang, Cheng⋅Huang, Cheng⋅Huang, Cheng⋅Huang, Cheng⋅Ji, Guang⋅Ji, G.⋅Ji, Guang⋅Ji, Guang⋅Ji, Guang⋅Lu, Xiongbin⋅Lu, Xiongbin⋅Lu, X.⋅Lu, Xiongbin and Lu, XiongbinThe Journal of clinical investigation, April 8, 2021.
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MAL2 drives immune evasion in breast cancer by suppressing tumor antigen presentationFang, Yuanzhang⋅Fang, Yuanzhang⋅Fang, Yuanzhang⋅Y, Fang⋅Fang, Yuanzhang⋅Wang, Lifei⋅L, Wang⋅Wang, Lifei⋅Wang, Lifei⋅Wang, Lifei⋅C, Wan⋅Wan, Changlin⋅Wan, Changlin⋅Wan, Changlin⋅Wan, Changlin⋅Sun, Yifan⋅Sun, Yifan⋅Y, Sun⋅Sun, Yifan⋅Sun, Yifan⋅Jeught K, Van⋅VAn der Jeught, Kevin⋅VAn der Jeught, Kevin⋅VAn der Jeught, Kevin⋅VAn der Jeught, Kevin⋅Zhou, Zhuolong⋅Z, Zhou⋅Zhou, Zhuolong⋅Zhou, Zhuolong⋅Zhou, Zhuolong⋅Dong, Tianhan⋅T, Dong⋅Dong, Tianhan⋅Dong, Tianhan⋅Dong, Tianhan⋅So, Ka M⋅KM, So⋅So, Ka M⋅So, Ka M⋅So, Ka M⋅Yu, Tao⋅Yu, Tao⋅Yu, Tao⋅T, Yu⋅Yu, Tao⋅Li, Yujing⋅Y, Li⋅Li, Yujing⋅Li, Yujing⋅Li, Yujing⋅Eyvani, Haniyeh⋅Eyvani, Haniyeh⋅Eyvani, Haniyeh⋅H, Eyvani⋅Eyvani, Haniyeh⋅AB, Colter⋅Colter, Austyn B⋅Colter, Austyn B⋅Colter, Austyn B⋅Colter, Austyn B⋅Dong, Edward⋅E, Dong⋅Dong, Edward⋅Dong, Edward⋅Dong, Edward⋅Cao, Sha⋅S, Cao⋅Cao, Sha⋅Cao, Sha⋅Cao, Sha⋅Wang, Jin⋅J, Wang⋅Wang, Jin⋅Wang, Jin⋅Wang, Jin⋅Schneider, Bryan P⋅Schneider, Bryan P⋅BP, Schneider⋅Schneider, Bryan P⋅Schneider, Bryan P⋅Sandusky, George E⋅Sandusky, George E⋅X, Zhang⋅Sandusky, George E⋅Sandusky, George E⋅Liu, Yunlong⋅Liu, Yunlong⋅Liu, Yunlong⋅Liu, Yunlong⋅Zhang, Chi⋅Zhang, Chi⋅Zhang, Chi⋅Zhang, Chi⋅Lu, Xiongbin⋅Lu, Xiongbin⋅Lu, Xiongbin⋅Lu, Xiongbin⋅Zhang, Xinna⋅Zhang, Xinna⋅Zhang, Xinna and Zhang, XinnaJournal of Clinical Investigation, vol. 131, (no. 1), pp. 1-17, Jan 2021.
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QKI is a critical pre-mRNA alternative splicing regulator of cardiac myofibrillogenesis and contractile function
Liu, Ying⋅Chen, Xu⋅Liu, Zhuo⋅Huang, Jie⋅Simpson, Ed⋅Sheng, Wei⋅Sanderson, Maria⋅Chen-Leng, Cai⋅Li, Xiaohui⋅Yang, Lei⋅Liu, Yunlong⋅Huang, Guoying⋅ and Sun, Ning
Nature Communications, vol. 12, (no. 1), 2021. | Journal Article
Tumor-derived IL-6 and trans-signaling among tumor, fat, and muscle mediate pancreatic cancer cachexia.Rupert, Joseph E⋅Rupert, Joseph E⋅JE, Rupert⋅A, Narasimhan⋅Narasimhan, Ashok⋅Narasimhan, Ashok⋅Jengelley, Daenique H A⋅DHA, Jengelley⋅Jengelley, Daenique H A⋅Jiang, Yanlin⋅Jiang, Yanlin⋅Y, Jiang⋅Liu, Jianguo⋅J, Liu⋅Liu, Jianguo⋅Au, Ernie⋅E, Au⋅Au, Ernie⋅LM, Silverman⋅Silverman, Libbie M⋅Silverman, Libbie M⋅G, Sandusky⋅Sandusky, George⋅Sandusky, George⋅Bonetto, Andrea⋅A, Bonetto⋅Bonetto, Andrea⋅S, Cao⋅Cao, Sha⋅Cao, Sha⋅X, Lu⋅Lu, Xiaoyu⋅Lu, Xiaoyu⋅TM, O’Connell⋅O'Connell, Thomas M⋅O'Connell, Thomas M⋅Liu, Yunlong⋅Y, Liu⋅Liu, Yunlong⋅LG, Koniaris⋅Koniaris, Leonidas G⋅Koniaris, Leonidas G⋅TA, Zimmers⋅Zimmers, Teresa A and Zimmers, Teresa AThe Journal of experimental medicine, vol. 218, (no. 6), June 7, 2021.
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2020
Breast Cancer Cell Detection and Characterization from Breast Milk-Derived Cells.
Bhat-Nakshatri, Poornima⋅Kumar, Brijesh⋅Simpson, Ed⋅Ludwig, Kandice K⋅Cox, Mary L⋅Gao, Hongyu⋅Liu, Yunlong and Nakshatri, Harikrishna
Cancer research, vol. 80, (no. 21), pp. 4828-4839, November 1, 2020. | Journal Article
CNS-Native Myeloid Cells Drive Immune Suppression in the Brain Metastatic Niche through Cxcl10.Guldner, Ian H⋅Guldner, Ian H⋅Guldner, Ian H⋅Guldner, Ian H⋅Guldner, Ian H⋅Wang, Qingfei⋅Wang, Qingfei⋅Wang, Qingfei⋅Wang, Qingfei⋅Wang, Qingfei⋅Yang, Lin⋅Yang, Lin⋅Yang, Lin⋅Yang, Lin⋅Yang, Lin⋅Golomb, Samantha M⋅Golomb, Samantha M⋅Golomb, Samantha M⋅Golomb, Samantha M⋅Golomb, Samantha M⋅Zhao, Zhuo⋅Zhao, Zhuo⋅Zhao, Zhuo⋅Zhao, Zhuo⋅Zhao, Zhuo⋅Lopez, Jacqueline A⋅Lopez, Jacqueline A⋅Lopez, Jacqueline A⋅Lopez, Jacqueline A⋅Lopez, Jacqueline A⋅Brunory, Abigail⋅Brunory, Abigail⋅Brunory, Abigail⋅Brunory, Abigail⋅Brunory, Abigail⋅Howe, Erin N⋅Howe, Erin N⋅Howe, Erin N⋅Howe, Erin N⋅Howe, Erin N⋅Zhang, Yizhe⋅Zhang, Yizhe⋅Zhang, Yizhe⋅Zhang, Yizhe⋅Zhang, Yizhe⋅Palakurthi, Bhavana⋅Palakurthi, Bhavana⋅Palakurthi, Bhavana⋅Palakurthi, Bhavana⋅Palakurthi, Bhavana⋅Barron, Martin⋅Barron, Martin⋅Barron, Martin⋅Barron, Martin⋅Barron, Martin⋅Gao, Hongyu⋅Gao, Hongyu⋅Gao, Hongyu⋅Gao, Hongyu⋅Gao, Hongyu⋅Xuei, Xiaoling⋅Xuei, Xiaoling⋅Xuei, Xiaoling⋅Xuei, Xiaoling⋅Xuei, Xiaoling⋅Liu, Yunlong⋅Liu, Yunlong⋅Liu, Yunlong⋅Liu, Yunlong⋅Liu, Yunlong⋅Li, Jun⋅Li, Jun⋅Li, Jun⋅Li, Jun⋅Li, Jun⋅Chen, Danny Z⋅Chen, Danny Z⋅Chen, Danny Z⋅Chen, Danny Z⋅Chen, Danny Z⋅Landreth, Gary E⋅Landreth, Gary E⋅Landreth, Gary E⋅Landreth, Gary E⋅Landreth, Gary E⋅Zhang, Siyuan⋅Zhang, Siyuan⋅Zhang, Siyuan⋅Zhang, Siyuan and Zhang, SiyuanCell, vol. 183, (no. 5), pp. 1234-1248.e25, November 25, 2020.
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Hair-bearing human skin generated entirely from pluripotent stem cells.Lee, Jiyoon⋅Lee, Jiyoon⋅Lee, Jiyoon⋅Lee, Jiyoon⋅Rabbani, Cyrus C⋅Rabbani, Cyrus C⋅Rabbani, Cyrus C⋅Rabbani, Cyrus C⋅Gao, Hongyu⋅Gao, Hongyu⋅Gao, Hongyu⋅Gao, Hongyu⋅Steinhart, Matthew R⋅Steinhart, Matthew R⋅Steinhart, Matthew R⋅Steinhart, Matthew R⋅Woodruff, Benjamin M⋅Woodruff, Benjamin M⋅Woodruff, Benjamin M⋅Woodruff, Benjamin M⋅Pflum, Zachary E⋅Pflum, Zachary E⋅Pflum, Zachary E⋅Pflum, Zachary E⋅Kim, Alexander⋅Kim, Alexander⋅Kim, Alexander⋅Kim, Alexander⋅Heller, Stefan⋅Heller, Stefan⋅Heller, Stefan⋅Heller, Stefan⋅Liu, Yunlong⋅Liu, Yunlong⋅Liu, Yunlong⋅Liu, Yunlong⋅Shipchandler, Taha Z⋅Shipchandler, Taha Z⋅Shipchandler, Taha Z⋅Shipchandler, Taha Z⋅Koehler, Karl R⋅Koehler, Karl R⋅Koehler, Karl R and Koehler, Karl RNature, vol. 582, (no. 7812), pp. 399-404, June 2020.
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Highly robust model of transcription regulator activity predicts breast cancer overall survival
Dong, Chuanpeng⋅Dong, Chuanpeng⋅Liu, Jiannan⋅Liu, Jiannan⋅Chen, Steven X⋅Chen, Steven X⋅Dong, Tianhan⋅Dong, Tianhan⋅Jiang, Guanglong⋅Jiang, Guanglong⋅Wang, Yue⋅Wang, Yue⋅Wu, Huanmei⋅Wu, Huanmei⋅Reiter, Jill L⋅Reiter, Jill L⋅Liu, Yunlong and Liu, Yunlong
BMC medical genomics, vol. 13, (no. Suppl 5), pp. 49, 2020-Apr-03. | Journal Article
Single cell transcriptome profiling of the human alcohol-dependent brain.
Brenner, Eric⋅Tiwari, Gayatri R⋅Kapoor, Manav⋅Liu, Yunlong⋅Brock, Amy and Mayfield, R Dayne
Human molecular genetics, vol. 29, (no. 7), pp. 1144-1153, May 8, 2020. | Journal Article
2018
Genomic and Epigenomic Signatures in Ovarian Cancer Associated with Resensitization to Platinum DrugsFang, Fang⋅Fang, Fang⋅Fang, Fang⋅Fang, Fang⋅Cardenas, Horacio⋅Cardenas, Horacio⋅Cardenas, Horacio⋅Cardenas, Horacio⋅Huang, Hao⋅Huang, Hao⋅Huang, Hao⋅Huang, Hao⋅Jiang, Guanglong⋅Jiang, Guanglong⋅Perkins, Susan M⋅Perkins, Susan M⋅Perkins, Susan M⋅Perkins, Susan M⋅Zhang, Chi⋅Zhang, Chi⋅Zhang, Chi⋅Zhang, Chi⋅Keer, Harold N⋅Keer, Harold N⋅Keer, Harold N⋅Keer, Harold N⋅Liu, Yunlong⋅Liu, Yunlong⋅Liu, Yunlong⋅Liu, Yunlong⋅Nephew, Kenneth P⋅Nephew, Kenneth P⋅Nephew, Kenneth P⋅Nephew, Kenneth P⋅Matei, Daniela⋅Matei, Daniela⋅Matei, Daniela and Matei, DanielaCancer research, vol. 78, (no. 3), pp. 644, 2018-02-01.
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2017
Roles of alternative splicing in modulating transcriptional regulation
Li, Jin⋅Wang, Yang⋅Rao, Xi⋅Wang, Yue⋅Feng, Weixing⋅Liang, Hong and Liu, Yunlong
BMC Systems Biology, vol. 11, 2017. | Journal Article
Roles of alternative splicing in modulating transcriptional regulation.
Li, Jin⋅Wang, Yang⋅Rao, Xi⋅Wang, Yue⋅Feng, Weixing⋅Liang, Hong and Liu, Yunlong
BMC systems biology, vol. 11, pp. 89, October 3, 2017. | Journal Article
2016
High Resolution Genomic Scans Reveal Genetic Architecture Controlling Alcohol Preference in Bidirectionally Selected Rat ModelLo, Chiao-Ling⋅Lo, Chiao-Ling⋅Lo, Chiao-Ling⋅Lo, Chiao-Ling⋅Lossie, Amy C⋅Lossie, Amy C⋅Lossie, Amy C⋅Lossie, Amy C⋅Liang, Tiebing⋅Liang, Tiebing⋅Liang, Tiebing⋅Liang, Tiebing⋅Liu, Yunlong⋅Liu, Yunlong⋅Liu, Yunlong⋅Liu, Yunlong⋅Xuei, Xiaoling⋅Xuei, Xiaoling⋅Xuei, Xiaoling⋅Xuei, Xiaoling⋅Lumeng, Lawrence⋅Lumeng, Lawrence⋅Lumeng, Lawrence⋅Lumeng, Lawrence⋅Zhou, Feng C⋅Zhou, Feng C⋅Zhou, Feng C⋅Zhou, Feng C⋅Muir, William M⋅Muir, William M⋅Muir, William M and Muir, William MPLoS genetics, vol. 12, (no. 8), pp. e1006178, 2016-08-00.
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Identification of rifampin-regulated functional modules and related microRNAs in human hepatocytes based on the protein interaction network.Li, Jin⋅Wang, Ying⋅Wang, Lei⋅Dai, Xuefeng⋅Cong, Wang⋅Feng, Weixing⋅Xu, Chengzhen⋅Deng, Yulin⋅Wang, Yue⋅Skaar, Todd C⋅Liang, Hong and Liu, YunlongBMC genomics, vol. 17, pp. 517.
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Rifampin Regulation of Drug Transporters Gene Expression and the Association of MicroRNAs in Human Hepatocytes.Benson, Eric A⋅Benson, Eric A⋅Benson, Eric A.⋅Eadon, Michael T⋅Eadon, Michael T.⋅Eadon, Michael T⋅Desta, Zeruesenay⋅Desta, Zeruesenay⋅Desta, Zeruesenay⋅Liu, Yunlong⋅Liu, Yunlong⋅Liu, Yunlong⋅Lin, Hai⋅Lin, Hai⋅Lin, Hai⋅Burgess, Kimberly S⋅Burgess, Kimberly S⋅Burgess, Kimberly S.⋅Segar, Matthew W⋅Segar, Matthew W⋅Segar, Matthew W.⋅Gaedigk, Andrea⋅Gaedigk, Andrea⋅Gaedigk, Andrea⋅Skaar, Todd C.⋅Skaar, Todd C and Skaar, Todd CFrontiers in pharmacology, vol. 7, pp. 111, 2016.
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2015
Understanding Transcription Factor Regulation by Integrating Gene Expression and DNase I Hypersensitive Sites
Wang, Guohua⋅Wang, Fang⋅Huang, Qian⋅Li, Yu⋅Liu, Yunlong and Wang, Yadong
BioMed Research International, vol. 2015, pp. 7, 20150903. | Journal Article
2014
Characterizing the heterogeneity of triple-negative breast cancers using microdissected normal ductal epithelium and RNA-sequencing.Radovich, Milan⋅Radovich, Milan⋅Radovich, Milan⋅Radovich, Milan⋅Clare, Susan⋅Clare, Susan E⋅Clare, Susan E⋅Clare, Susan⋅Atale, Rutuja⋅Atale, Rutuja⋅Atale, Rutuja⋅Atale, Rutuja⋅Pardo, Ivanesa⋅Pardo, Ivanesa⋅Pardo, Ivanesa⋅Pardo, Ivanesa⋅Hancock, Bradley A⋅Hancock, Bradley⋅Hancock, Bradley A⋅Hancock, Bradley⋅Solzak, Jeffrey P⋅Solzak, Jeffrey P⋅Solzak, Jeffrey⋅Solzak, Jeffrey⋅Kassem, Nawal⋅Kassem, Nawal⋅Kassem, Nawal⋅Kassem, Nawal⋅Mathieson, Theresa⋅Mathieson, Theresa⋅Mathieson, Theresa⋅Mathieson, Theresa⋅Storniolo, Anna⋅Storniolo, Anna M⋅Storniolo, Anna⋅Storniolo, Anna M⋅Rufenbarger, Connie⋅Rufenbarger, Connie⋅Rufenbarger, Connie⋅Rufenbarger, Connie⋅Lillemoe, Heather⋅Lillemoe, Heather A⋅Lillemoe, Heather⋅Lillemoe, Heather A⋅Blosser, Rachel⋅Blosser, Rachel J⋅Blosser, Rachel J⋅Blosser, Rachel⋅Choi, Mi R⋅Choi, Mi⋅Choi, Mi⋅Choi, Mi R⋅Sauder, Candice⋅Sauder, Candice A⋅Sauder, Candice A⋅Sauder, Candice⋅Doxey, Diane⋅Doxey, Diane⋅Doxey, Diane⋅Doxey, Diane⋅Henry, Jill⋅Henry, Jill⋅Henry, Jill E⋅Henry, Jill E⋅Hilligoss, Eric E⋅Hilligoss, Eric E⋅Hilligoss, Eric⋅Hilligoss, Eric⋅Sakarya, Onur⋅Sakarya, Onur⋅Sakarya, Onur⋅Sakarya, Onur⋅Hyland, Fiona C⋅Hyland, Fiona⋅Hyland, Fiona⋅Hyland, Fiona C⋅Hickenbotham, Matthew⋅Hickenbotham, Matthew⋅Hickenbotham, Matthew⋅Hickenbotham, Matthew⋅Zhu, Jin⋅Zhu, Jin⋅Zhu, Jin⋅Zhu, Jin⋅Glasscock, Jarret⋅Glasscock, Jarret⋅Glasscock, Jarret⋅Glasscock, Jarret⋅Badve, Sunil⋅Badve, Sunil⋅Badve, Sunil⋅Badve, Sunil⋅Ivan, Mircea⋅Ivan, Mircea⋅Ivan, Mircea⋅Ivan, Mircea⋅Liu, Yunlong⋅Liu, Yunlong⋅Liu, Yunlong⋅Liu, Yunlong⋅Sledge, George⋅Sledge, George W⋅Sledge, George W⋅Sledge, George⋅Schneider, Bryan P⋅Schneider, Bryan⋅Schneider, Bryan and Schneider, Bryan PBreast cancer research and treatment, vol. 143, (no. 1), pp. 57-68, 2014/Jan.
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Correcting imbalanced reads coverage in bacterial transcriptome sequencing with extreme deep coverage.Zhang, Xinjun⋅Gangaiah, Dharanesh⋅Munson, Robert S⋅Spinola, Stanley M and Liu, YunlongInternational journal of computational biology and drug design, vol. 7, (no. 2-3), pp. 195-213, 2014.
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Haemophilus ducreyi Hfq contributes to virulence gene regulation as cells enter stationary phase.Gangaiah, Dharanesh⋅Labandeira-Rey, Maria⋅Zhang, Xinjun⋅Fortney, Kate R⋅Ellinger, Sheila⋅Zwickl, Beth⋅Baker, Beth⋅Liu, Yunlong⋅Janowicz, Diane⋅Katz, Barry P⋅Brautigam, Chad A⋅Munson, Robert S⋅Hansen, Eric J and Spinola, Stanley MmBio, vol. 5, (no. 1), pp. e01081-13, 2014.
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Impact of human pathogenic micro-insertions and micro-deletions on post-transcriptional regulation
Zhang, Xinjun⋅Lin, Hai⋅Zhao, Huiying⋅Hao, Yangyang⋅Mort, Matthew⋅Cooper, David N⋅Zhou, Yaoqi and Liu, Yunlong
Human Molecular Genetics, vol. 23, (no. 11), pp. 3034, 20140601. | Journal Article
Novel specific microRNA biomarkers in idiopathic inflammatory bowel disease unrelated to disease activity.Lin, Jingmei⋅Welker, Noah C⋅Zhao, Zijin⋅Li, Yong⋅Zhang, Jianjun⋅Reuss, Sarah A⋅Zhang, Xinjun⋅Lee, Hwajeong⋅Liu, Yunlong and Bronner, Mary PModern pathology : an official journal of the United States and Canadian Academy of Pathology, Inc, vol. 27, (no. 4), pp. 602-8, 2014/Apr.
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2013
Activation of CpxRA in Haemophilus ducreyi primarily inhibits the expression of its targets, including major virulence determinants.Gangaiah, Dharanesh⋅Zhang, Xinjun⋅Fortney, Kate R⋅Baker, Beth⋅Liu, Yunlong⋅Munson, Robert S and Spinola, Stanley MJournal of bacteriology, vol. 195, (no. 15), pp. 3486-502, 2013/Aug.
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Amplification of distant estrogen response elements deregulates target genes associated with tamoxifen resistance in breast cancer.Hsu, Pei-Yin⋅Hsu, Hang-Kai⋅Lan, Xun⋅Juan, Liran⋅Yan, Pearlly S⋅Labanowska, Jadwiga⋅Heerema, Nyla⋅Hsiao, Tzu-Hung⋅Chiu, Yu-Chiao⋅Chen, Yidong⋅Liu, Yunlong⋅Li, Lang⋅Li, Rong⋅Thompson, Ian M⋅Nephew, Ken⋅Sharp, Zelton D⋅Kirma, Nameer B⋅Jin, Victor and Huang, Tim HCancer cell, vol. 24, (no. 2), pp. 197-212, 2013/Aug/12.
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Comprehensive genomic profiling in diabetic nephropathy reveals the predominance of proinflammatory pathways.Kelly, Katherine J⋅Liu, Yunlong⋅Zhang, Jizhong⋅Goswami, Chirayu⋅Lin, Hai and Dominguez, Jesus HPhysiological genomics, vol. 45, (no. 16), pp. 710-9, 2013/Aug/15.
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