Accès ouvert déclaré
1999
article
The DNA sequence of human chromosome 22
Ian Dunham, Adrienne Hunt, John Collins, Richard Bruskiewich, David Beare, M. Clamp, Luc J Smink, R. Ainscough, J. P. Almeida, Anne Babbage, C. L. Bagguley, J. Bailey, K. F. Barlow, K. Bates, O. Beasley, Christine Bird, S. Blakey, Anne Bridgeman, David Buck, Joanne C. Burgess, W. Burrill, J.H. Burton, C. Carder, N. P. Carter, Y. Chen, G.M.G. Clark, S. M. Clegg, V. Cobley, Charlotte G. Cole, R. E. Collier, R. Connor, D. Conroy, N. Corby, G. J. Coville, Amelia Cox, John Davis, Elisabeth Dawson, Pawandeep Dhami, Cat Dockree, Steve Dodsworth, Richard Durbin, Andrew Ellington, Kathryn L. Evans, Jim Fey, Keiran Fleming, Lisa French, A. A. Garner, James Gilbert, Melanie E. Goward, Darren Grafham, Mark Griffiths, Carol Hall, R. E. Hall, G. Hall-Tamlyn, Rosemary Heathcott, Sarah K Ho, S. Holmes, Sarah Hunt, Matthew C. Jones, J. K. Kershaw, A. M. Kimberley, Andrew King, Gavin K. Laird, Cordelia F. Langford, M. Leversha, Christine Lloyd, David Lloyd, I. D. Martyn, M. Mashreghi-Mohammadi, L. Matthews, O. T. McCann, Joseph L. McClay, Stuart McLaren, Amanda A. McMurray, Stuart A. Milne, Beverley Mortimore, C. Odell, Rebecca Pavitt, A. V. Pearce, D. Pearson, Benjamin Phillimore, Stephen Phillips, R. W. Plumb, H. P. Ramsay, Y. Ramsey, Layne Rogers, M. T. Ross, Carol Scott, Harminder Sehra, C. D. Skuce, Susan L. Smalley, M. L. Smith, Cari Soderlund, L. Spragon, Charles A. Steward, John Sulston, R. Mark Swann, Mark D. Vaudin, M. Wall, J. M. Wallis, Mathew N. Whiteley, Dave Willey, Leanne E. Williams, S. Williams, Helen Williamson, T. E. Wilmer, Laurens Wilming, C. L. Wright, Tim Hubbard, D. R. Bentley, Stephan Beck, Jane Rogers, Nobutaka Shimizu, Satoshi Minoshima, Kazuhiko Kawasaki, Takashi Sasaki, Shuichi Asakawa, Jun Kudoh, Ai Shintani, Kazunori Shibuya, Yumiko Yoshizaki, Nanako Aoki, Susumu Mitsuyama, B.A. Roe, F. Chen, L Chu, Judy S. Crabtree, Stéphane Deschamps, Ahn Do, Thuy Do, Alexandra Dorman, Ferric C. Fang, Ying Fu, Ping Hu, Axin Hua, Steve Kenton, Hongshing Lai, Houyuan Lao, Jennifer D. Lewis, Suzanna E. Lewis, Shau‐Ping Lin, Po‐Ru Loh, Eda Malaj, T. Nguyen, Huaqin Pan, Stephen Phan, Sulan Qi, Y. Qian, L. Ray, Qun Ren, Steve Shaull, Daniel B. Sloan, Linsheng Song, Q. Wang, Ying‐Ping Wang, Zhili Wang, James D. White, Darrin L. Willingham, Hongmin Wu, Ziyun Yao, Ming Zhan, G. Zhang, Stephanie L. Chissoe, J. Murray, Nancy Miller, Pat Minx, Robert S. Fulton, D. Johnson, Guy W. Bemis, H. D. Bradshaw, Steve Bourne, M. Cordes, Z. Du, Lucinda A. Fulton, D. Goela, Tina Graves, John S. Hawkins, K. Hinds, K. Kemp, Phil Latreille, Dan Layman, Philip Ozersky, Theresa Rohlfing, Paul Scheet, Calvin C Walker, A. Wamsley, P. Wohldmann, Kymberlie Pepin, Joanne O. Nelson, Ian Korf, J. A. Bedell, LaDeana Hillier, Elaine R. Mardis, R Waterston, Richard Wilson, Beverly S. Emanuel, Tamim H. Shaikh, Hiroki Kurahashi, Sulagna C. Saitta, Marcia L. Budarf, Heather E. McDermid, A. Tim Johnson, Andrew C. Wong, Bernice E. Morrow, Lisa Edelmann, Usa Kim, H. Shizuya, Melvin I. Simon, Jan P. Dumanski, Myriam Peyrard, Darek Kedra, Eyal Seroussi, Ingegerd Fransson, I. Tapia, Carl E.G. Bruder, Kevin P. O'Brien
1168Citations signalées, ce qui n’est pas une note de qualité
10Institutions déclarées
5Pays d’affiliation déclarés
Rattachement africain : gb, se, jp, us, ca.
Niveau de preuve : code pays fourni par la source.
Le résumé fourni par la source
Knowledge of the complete genomic DNA sequence of an organism allows a systematic approach to defining its genetic components. The genomic sequence provides access to the complete structures of all genes, including those without known function, their control elements, and, by inference, the proteins they encode, as well as all other biologically important sequences. Furthermore, the sequence is a rich and permanent source of information for the design of further biological studies of the organism and for the study of evolution through cross-species sequence comparison. The power of this approach has been amply demonstrated by the determination of the sequences of a number of microbial and model organisms. The next step is to obtain the complete sequence of the entire human genome. Here we report the sequence of the euchromatic part of human chromosome 22. The sequence obtained consists of 12 contiguous segments spanning 33.4 megabases, contains at least 545 genes and 134 pseudogenes, and provides the first view of the complex chromosomal landscapes that will be found in the rest of the genome.
Ce résumé expose les affirmations des auteurs. BNTIC ne l’interprète pas comme une validation indépendante des résultats.
Le contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.
- Titre Crossref
- The DNA sequence of human chromosome 22
- Date Crossref
- 02/12/1999
- Éditeur
- Springer Science and Business Media LLC
- Type
- journal-article
Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.
Les institutions déclarées
Une affiliation ne permet pas de déduire la nationalité d’un auteur.
Les sujets associés
RNA and protein synthesis mechanismsGenomics and Phylogenetic StudiesChromosomal and Genetic Variations