The Knockout Mouse Project

[1]  Wolfgang Wurst,et al.  A public gene trap resource for mouse functional genomics , 2004, Nature Genetics.

[2]  J. Delrow,et al.  Identification and validation of PDGF transcriptional targets by microarray-coupled gene-trap mutagenesis , 2004, Nature Genetics.

[3]  C. Stewart,et al.  To knockout in 129 or in C57BL/6: that is the question. , 2004, Trends in genetics : TIG.

[4]  Peter Vogel,et al.  Wnk1 kinase deficiency lowers blood pressure in mice: A gene-trap screen to identify potential targets for therapeutic intervention , 2003, Proceedings of the National Academy of Sciences of the United States of America.

[5]  W. Horton Skeletal development: insights from targeting the mouse genome , 2003, The Lancet.

[6]  Franz Vauti,et al.  A large-scale, gene-driven mutagenesis approach for the functional analysis of the mouse genome , 2003, Proceedings of the National Academy of Sciences of the United States of America.

[7]  A. F. Stewart,et al.  High-throughput engineering of the mouse genome coupled with high-resolution expression analysis , 2003, Nature Biotechnology.

[8]  T. Pawson,et al.  Transgenic RNA interference in ES cell–derived embryos recapitulates a genetic null phenotype , 2003, Nature Biotechnology.

[9]  P. D'Orléans-Juste,et al.  Cardiovascular diseases: new insights from knockout mice. , 2003, Current opinion in pharmacology.

[10]  Conrad C. Huang,et al.  BayGenomics: a resource of insertional mutations in mouse embryonic stem cells , 2003, Nucleic Acids Res..

[11]  Colin N. Dewey,et al.  Initial sequencing and comparative analysis of the mouse genome. , 2002 .

[12]  R. Jaenisch,et al.  Male and female mice derived from the same embryonic stem cell clone by tetraploid embryo complementation , 2002, Nature Biotechnology.

[13]  Joseph L. Goldstein Laskers for 2001: Knockout mice and test-tube babies , 2001, Nature Medicine.

[14]  W. Stanford,et al.  Gene-trap mutagenesis: past, present and beyond , 2001, Nature Reviews Genetics.

[15]  D. Wallace,et al.  Mouse models for mitochondrial disease. , 2001, American journal of medical genetics.

[16]  R. Jaenisch,et al.  Deficiency of methyl-CpG binding protein-2 in CNS neurons results in a Rett-like phenotype in mice , 2001, Nature Genetics.

[17]  Hans Lehrach,et al.  Functional Annotation of Mouse Genome Sequences , 2001, Science.

[18]  Timothy B. Stockwell,et al.  The Sequence of the Human Genome , 2001, Science.

[19]  J. V. Moran,et al.  Initial sequencing and analysis of the human genome. , 2001, Nature.

[20]  Hans Lehrach,et al.  Establishment of a gene-trap sequence tag library to generate mutant mice from embryonic stem cells , 2000, Nature Genetics.

[21]  Christophe Person,et al.  Disruption and sequence identification of 2,000 genes in mouse embryonic stem cells , 1998, Nature.

[22]  T. Curran,et al.  A protein related to extracellular matrix proteins deleted in the mouse mutant reeler , 1995, Nature.

[23]  M. Maffei,et al.  Positional cloning of the mouse obese gene and its human homologue , 1994, Nature.

[24]  R. Woychik,et al.  Molecular characterization of the mouse agouti locus , 1992, Cell.