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Nature Genetics, ISSN 1061-4036, 09/2004, Volume 36, Issue 9, pp. 921 - 924
Mouse knockout technology provides a powerful means of elucidating gene function in vivo, and a publicly available genome-wide collection of mouse knockouts... 
HUMAN GENOME | EMBRYONIC STEM-CELLS | SEQUENCE | GENETICS & HEREDITY | GENE-TRAP MUTAGENESIS | PHENOTYPE | MICE | IDENTIFICATION | DEFICIENCY | RESOURCE | INSIGHTS | Research Embryo Creation - economics | Phenotype | Animals | Genetic Research | Alleles | Mice | Mice, Knockout | Usage | Gene mutations | Physiological aspects | Genetic aspects | Nucleotide sequencing | Research | Identification and classification | Methods
Journal Article
Nature Biotechnology, ISSN 1087-0156, 01/2016, Volume 34, Issue 8, pp. 808 - 810
Journal Article
Trends in Cell Biology, ISSN 0962-8924, 2014, Volume 24, Issue 10, pp. 594 - 602
Journal Article
by White, Gemma and White, Jacqueline K and Gerdin, Anna-Karin and Karp, Natasha A and Ryder, Ed and Buljan, Marija and Bussell, James N and Salisbury, Jennifer and Clare, Simon and Ingham, Neil J and Podrini, Christine and Houghton, Richard and Estabel, Jeanne and Bottomley, Joanna R and Melvin, David G and Sunter, David and Adams, David J and Adams, Niels C and Baker, Lauren and Barnes, Caroline and Beveridge, Ryan and Cambridge, Emma and Carragher, Damian and Chana, Prabhjoat and Clarke, Kay and Hooks, Yvette and Igosheva, Natalia and Ismail, Ozama and Jackson, Hannah and Kane, Leanne and Lacey, Rosalind and Lafont, David Tino and Lucas, Mark and Maguire, Simon and McGill, Katherine and McIntyre, Rebecca E and Messager, Sophie and Mottram, Lynda and Mulderrig, Lee and Pearson, Laila and Pearson, Selina and Protheroe, Hayley J and Roberson, Laura-Anne and Salsbury, Grace and Sanderson, Mark and Sanger, Daniel and Shannon, Carl and Thompson, Paul C and Tuck, Elizabeth and Vancollie, Valerie E and Brackenbury, Lisa and Bushell, Wendy and Cook, Ross and Dalvi, Priya and Gleeson, Diane and Habib, Bishoy and Hardy, Matt and Liakath-Ali, Kifayathullah and Miklejewska, Evelina and Price, Stacey and Sethi, Debarati and Trenchard, Elizabeth and von Schiller, Dominique and Vyas, Sapna and West, Anthony P and Woodward, John and Wynn, Elizabeth and Evans, Arthur and Gannon, David and Griffiths, Mark and Holroyd, Simon and Iyer, Vivek and Kipp, Christian and Lewis, Morag and Li, Wei and Oakley, Darren and Richardson, David and Smedley, Damian and Agu, Chukwuma and Bryant, Jackie and Delaney, Liz and Gueorguieva, Nadia I and Tharagonnet, Helen and Townsend, Anne J and Biggs, Daniel and Brown, Terry and Brown, Ellen and Collinson, Adam and Dumeau, Charles-Etienne and Grau, Evelyn and Harrison, James and Harrison, Sarah and Ingle, Catherine E and Kundi, Helen and Madich, Alla and Mayhew, Danielle and Metcalf, Tom and Newman, Stuart and Pass, Johanna and Reynolds, Helen and ... and Sanger Inst Mouse Genetics Project and Sanger Institute Mouse Genetics Project
Cell, ISSN 0092-8674, 07/2013, Volume 154, Issue 2, pp. 452 - 464
Journal Article
Methods in Molecular Biology, ISSN 1064-3745, 01/2016, Volume 1366, pp. 425 - 430
Tissue specific knockout mice are valuable tools to study gene function in vivo. The method uses the Cre/loxP system in which loxP sites are cloned into the... 
Estrogen receptor | Knockout mice | Gene targeting | Genotyping | Tissue specific | Floxed | Transgenic | Cre enzyme | LoxP | Phenotype | Animals | Estrogen Receptor alpha - genetics | Exons | Down-Regulation | Genotype | Workflow | Integrases - genetics | Estrogen Receptor alpha - deficiency | Gene Knockdown Techniques | Mice, Knockout
Journal Article
Sheng wu gong cheng xue bao = Chinese journal of biotechnology, ISSN 1000-3061, 05/2019, Volume 35, Issue 5, p. 784
The establishment and development of gene knockout mice have provided powerful support for the study of gene function and the treatment of human diseases. Gene... 
Animals | Humans | Gene Targeting - trends | Homologous Recombination | Mice | Embryonic Stem Cells | Gene Knockout Techniques - trends | Disease Models, Animal | Mice, Knockout | Gene targeting | Technology | Homologous recombination | Medical treatment | Rodents | Embryo cells | Stem cells | Stem cell transplantation | Homology
Journal Article