Resultats de la cerca - Ermel, Raili
- Mostrar 1 - 14 resultats de 14
-
1
Multiple independent mechanisms link gene polymorphisms in the region of ZEB2 with risk of coronary artery disease per Ma, Lijiang, Chandel, Nirupama, Ermel, Raili, Sukhavasi, Katyayani, Hao, Ke, Ruusalepp, Arno, Björkegren, Johan L.M., Kovacic, Jason C
Publicat 2020Text -
2
Global analysis of A-to-I RNA editing reveals association with common disease variants per Franzén, Oscar, Ermel, Raili, Sukhavasi, Katyayani, Jain, Rajeev, Jain, Anamika, Betsholtz, Christer, Giannarelli, Chiara, Kovacic, Jason C., Ruusalepp, Arno, Skogsberg, Josefin, Hao, Ke, Schadt, Eric E., Björkegren, Johan L.M.
Publicat 2018Text -
3
OR09-04 Common Genetic Variants Associated with SERPINA6 Expression in Liver Influence Cortisol-Responsive Transcriptional Networks in Human Adipose Tissue per Bankier, Sean A, Crawford, Andrew A, Wang, Lingfei, Sukhavasi, Katyayani, Ermel, Raili, Andrew, Ruth, Ruusalepp, Arno, Timpson, Nicolas J, Smith, George Davey, Bjorkegren, Johan L M, Walker, Brian R, Michoel, Tom
Publicat 2020Text -
4
Opportunities and challenges for transcriptome-wide association studies per Wainberg, Michael, Sinnott-Armstrong, Nasa, Mancuso, Nicholas, Barbeira, Alvaro N., Knowles, David A., Golan, David, Ermel, Raili, Ruusalepp, Arno, Quertermous, Thomas, Hao, Ke, Björkegren, Johan L. M., Kyung Im, Hae, Pasaniuc, Bogdan, Rivas, Manuel A., Kundaje, Anshul
Publicat 2019Text -
5
Cross-Tissue Regulatory Gene Networks in Coronary Artery Disease per Talukdar, Husain A., Asl, Hassan Foroughi, Jain, Rajeev K., Ermel, Raili, Ruusalepp, Arno, Franzén, Oscar, Kidd, Brian A., Readhead, Ben, Giannarelli, Chiara, Kovacic, Jason C., Ivert, Torbjörn, Dudley, Joel T., Civelek, Mete, Lusis, Aldons J., Schadt, Eric E., Skogsberg, Josefin, Michoel, Tom, Björkegren, Johan L.M.
Publicat 2016Text -
6
Integrative Prioritization of Causal Genes for Coronary Artery Disease per Hao, Ke, Ermel, Raili, Sukhavasi, Katyayani, Cheng, Haoxiang, Ma, Lijiang, Li, Ling, Amadori, Letizia, Koplev, Simon, Franzén, Oscar, d’Escamard, Valentina, Chandel, Nirupama, Wolhuter, Kathryn, Bryce, Nicole S., Venkata, Vamsidhar RM, Miller, Clint L., Ruusalepp, Arno, Schunkert, Heribert, Björkegren, Johan L.M., Kovacic, Jason C.
Publicat 2022Text -
7
Transcriptome-wide association study of coronary artery disease identifies novel susceptibility genes per Li, Ling, Chen, Zhifen, von Scheidt, Moritz, Li, Shuangyue, Steiner, Andrea, Güldener, Ulrich, Koplev, Simon, Ma, Angela, Hao, Ke, Pan, Calvin, Lusis, Aldons J., Pang, Shichao, Kessler, Thorsten, Ermel, Raili, Sukhavasi, Katyayani, Ruusalepp, Arno, Gagneur, Julien, Erdmann, Jeanette, Kovacic, Jason C., Björkegren, Johan L. M., Schunkert, Heribert
Publicat 2022Text -
8
Publisher Correction: Transcriptome-wide association study of coronary artery disease identifies novel susceptibility genes per Li, Ling, Chen, Zhifen, von Scheidt, Moritz, Li, Shuangyue, Steiner, Andrea, Güldener, Ulrich, Koplev, Simon, Ma, Angela, Hao, Ke, Pan, Calvin, Lusis, Aldons J., Pang, Shichao, Kessler, Thorsten, Ermel, Raili, Sukhavasi, Katyayani, Ruusalepp, Arno, Gagneur, Julien, Erdmann, Jeanette, Kovacic, Jason C., Björkegren, Johan L. M., Schunkert, Heribert
Publicat 2022Text -
9
The HDAC9-associated risk locus promotes coronary artery disease by governing TWIST1 per Ma, Lijiang, Bryce, Nicole S., Turner, Adam W., Di Narzo, Antonio F., Rahman, Karishma, Xu, Yang, Ermel, Raili, Sukhavasi, Katyayani, d’Escamard, Valentina, Chandel, Nirupama, V’Gangula, Bhargavi, Wolhuter, Kathryn, Kadian-Dodov, Daniella, Franzen, Oscar, Ruusalepp, Arno, Hao, Ke, Miller, Clint L., Björkegren, Johan L. M., Kovacic, Jason C.
Publicat 2022Text -
10
Cardiometabolic Risk Loci Share Downstream Cis- and Trans-Gene Regulation Across Tissues and Diseases per Franzén, Oscar, Ermel, Raili, Cohain, Ariella, Akers, Nicholas K., Di Narzo, Antonio, Talukdar, Husain A., Foroughi-Asl, Hassan, Giambartolomei, Claudia, Fullard, John F., Sukhavasi, Katyayani, Köks, Sulev, Gan, Li-Ming, Giannarelli, Chiara, Kovacic, Jason C., Betsholtz, Christer, Losic, Bojan, Michoel, Tom, Hao, Ke, Roussos, Panos, Skogsberg, Josefin, Ruusalepp, Arno, Schadt, Eric E., Björkegren, Johan L.M.
Publicat 2016Text -
11
Integrative analysis of loss-of-function variants in clinical and genomic data reveals novel genes associated with cardiovascular traits per Glicksberg, Benjamin S., Amadori, Letizia, Akers, Nicholas K., Sukhavasi, Katyayani, Franzén, Oscar, Li, Li, Belbin, Gillian M., Akers, Kristin L., Shameer, Khader, Badgeley, Marcus A., Johnson, Kipp W., Readhead, Ben, Darrow, Bruce J., Kenny, Eimear E., Betsholtz, Christer, Ermel, Raili, Skogsberg, Josefin, Ruusalepp, Arno, Schadt, Eric E., Dudley, Joel T., Ren, Hongxia, Kovacic, Jason C., Giannarelli, Chiara, Li, Shuyu D., Björkegren, Johan L. M., Chen, Rong
Publicat 2019Text -
12
Correction to: Integrative analysis of loss-of-function variants in clinical and genomic data reveals novel genes associated with cardiovascular traits per Glicksberg, Benjamin S., Amadori, Letizia, Akers, Nicholas K., Sukhavasi, Katyayani, Franzén, Oscar, Li, Li, Belbin, Gillian M., Ayers, Kristin L., Shameer, Khader, Badgeley, Marcus A., Johnson, Kipp W., Readhead, Ben, Darrow, Bruce J., Kenny, Eimear E., Betsholtz, Christer, Ermel, Raili, Skogsberg, Josefin, Ruusalepp, Arno, Schadt, Eric E., Dudley, Joel T., Ren, Hongxia, Kovacic, Jason C., Giannarelli, Chiara, Li, Shuyu D., Björkegren, Johan L. M., Chen, Rong
Publicat 2019Text -
13
An integrative multiomic network model links lipid metabolism to glucose regulation in coronary artery disease per Cohain, Ariella T., Barrington, William T., Jordan, Daniel M., Beckmann, Noam D., Argmann, Carmen A., Houten, Sander M., Charney, Alexander W., Ermel, Raili, Sukhavasi, Katyayani, Franzen, Oscar, Koplev, Simon, Whatling, Carl, Belbin, Gillian M., Yang, Jialiang, Hao, Ke, Kenny, Eimear E., Tu, Zhidong, Zhu, Jun, Gan, Li-Ming, Do, Ron, Giannarelli, Chiara, Kovacic, Jason C., Ruusalepp, Arno, Lusis, Aldons J., Bjorkegren, Johan L. M., Schadt, Eric E.
Publicat 2021Text -
14
Variation in the SERPINA6/SERPINA1 locus alters morning plasma cortisol, hepatic corticosteroid binding globulin expression, gene expression in peripheral tissues, and risk of card... per Crawford, Andrew A., Bankier, Sean, Altmaier, Elisabeth, Barnes, Catriona L. K., Clark, David W., Ermel, Raili, Friedrich, Nele, van der Harst, Pim, Joshi, Peter K., Karhunen, Ville, Lahti, Jari, Mahajan, Anubha, Mangino, Massimo, Nethander, Maria, Neumann, Alexander, Pietzner, Maik, Sukhavasi, Katyayani, Wang, Carol A., Bakker, Stephan J. L., Bjorkegren, Johan L. M., Campbell, Harry, Eriksson, Johan, Gieger, Christian, Hayward, Caroline, Jarvelin, Marjo-Riitta, McLachlan, Stela, Morris, Andrew P., Ohlsson, Claes, Pennell, Craig E., Price, Jackie, Rudan, Igor, Ruusalepp, Arno, Spector, Tim, Tiemeier, Henning, Völzke, Henry, Wilson, James F., Michoel, Tom, Timpson, Nicolas J., Smith, George Davey, Walker, Brian R.
Publicat 2021Text