Human genome anatomy: BACs integrating the genetic and cytogenetic maps for bridging genome and biomedicine

被引:42
作者
Korenberg, JR [1 ]
Chen, XN
Sun, ZG
Shi, ZY
Ma, SW
Vataru, E
Yimlamai, D
Weissenbach, JS
Shizuya, H
Simon, MI
Gerety, SS
Nguyen, H
Zemsteva, IS
Hui, L
Silva, J
Wu, XY
Birren, BW
Hudson, TJ
机构
[1] Cedars Sinai Med Ctr, Ctr Med Genet Birth Defects, Los Angeles, CA 90048 USA
[2] Univ Calif Los Angeles, Dept Human Genet, Los Angeles, CA 90048 USA
[3] Ctr Natl Sequenceage, F-91006 Evry, France
[4] CALTECH, Div Biol, Pasadena, CA 91125 USA
[5] MIT, Whitehead Inst Biomed Res, Ctr Genome Res, Cambridge, MA USA
[6] McGill Univ, Montreal Gen Hosp, Res Inst, Montreal, PQ H3G 1A4, Canada
关键词
D O I
10.1101/gr.9.10.994
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Human genome sequencing is accelerating rapidly. Multiple genome maps link this sequence to problems in biology and clinical medicine. Because each map represents a different aspect of the structure, content, and behavior of human chromosomes, these fundamental properties must be integrated with the genome to understand disease genes, cancer instability, and human evolution. Cytogenetic maps use 400-850 visible band landmarks and are the primary means for defining prenatal defects and novel cancer breakpoints, thereby providing simultaneous examination of the entire genome. Recent genetic, physical, and transcript maps use PCR-based landmarks called sequence-tagged sites (STSs), We have integrated these genome maps by anchoring the human cytogenetic to the STS-based genetic and physical maps with 1021 STS-BAC pairs at an average spacing of similar to 1 per 3 Mb. These integration points are represented by 872 unique STSs, including 642 polymorphic markers and 957 bacterial artificial chromosomes (BACs) each of which was localized on high resolution fluorescent banded chromosomes. These BACs constitute a resource that bridges map levels and provides the tools to seamlessly translate questions raised by genomic change seen at the chromosomal level into answers based at the molecular level. We show how the BACs provide molecular links for understanding human genomic duplications, meiosis, and evolution, as well as reagents for conducting genome-wide prenatal diagnosis at the molecular level and for detecting gene candidates associated with novel cancer breakpoints.
引用
收藏
页码:994 / 1001
页数:8
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