Isochores and CpG Islands in YAC Contigs in Human Xq26.1-qter
ISSN: |
0888-7543
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Source: |
Elsevier Journal Backfiles on ScienceDirect 1907 - 2002
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Topics: |
Biology
Medicine
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Type of Medium: |
Electronic Resource
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URL: |
_version_ | 1798292083463684096 |
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autor | Pilia, G. Little, R.D. Aissani, B. Bernardi, G. Schlessinger, D. |
autorsonst | Pilia, G. Little, R.D. Aissani, B. Bernardi, G. Schlessinger, D. |
book_url | http://dx.doi.org/10.1006/geno.1993.1347 |
datenlieferant | nat_lic_papers |
fussnote | GC levels were assessed at 37 loci across 30 Mb of Xq26.1-qter, a region physically mopped in overlapping yeast artificial chromosome clones. In 8 Mb of R band Xq26, GC is relatively high (up to 44%) in the proximal 4 Mb and relatively low (40-41%) in the distal 4 Mb. Consistently low GC values (38-41%) are observed in G band Xq27. In contrast, further toward the telomere in Xq28, the GC level rises progressively to reach 52% at 2 to 4 Mb from the end of the chromosome; this region is delimited by low GC loci. Across these regions of Xq, the content of rare-cutter restriction enzyme sites containing CpG, including 'CpG islands' in the most completely mapped Xq26-27.1 region, is correlated with GC level. Isochore mapping can thus provide one index of putative gene content across mapped regions. |
hauptsatz | hsatz_simple |
identnr | NLZ183735269 |
issn | 0888-7543 |
journal_name | Genomics |
materialart | 1 |
package_name | Elsevier |
publikationsort | Amsterdam |
publisher | Elsevier |
reference | 17 (1993), S. 456-462 |
search_space | articles |
shingle_author_1 | Pilia, G. Little, R.D. Aissani, B. Bernardi, G. Schlessinger, D. |
shingle_author_2 | Pilia, G. Little, R.D. Aissani, B. Bernardi, G. Schlessinger, D. |
shingle_author_3 | Pilia, G. Little, R.D. Aissani, B. Bernardi, G. Schlessinger, D. |
shingle_author_4 | Pilia, G. Little, R.D. Aissani, B. Bernardi, G. Schlessinger, D. |
shingle_catch_all_1 | Pilia, G. Little, R.D. Aissani, B. Bernardi, G. Schlessinger, D. Isochores and CpG Islands in YAC Contigs in Human Xq26.1-qter 0888-7543 08887543 Elsevier |
shingle_catch_all_2 | Pilia, G. Little, R.D. Aissani, B. Bernardi, G. Schlessinger, D. Isochores and CpG Islands in YAC Contigs in Human Xq26.1-qter 0888-7543 08887543 Elsevier |
shingle_catch_all_3 | Pilia, G. Little, R.D. Aissani, B. Bernardi, G. Schlessinger, D. Isochores and CpG Islands in YAC Contigs in Human Xq26.1-qter 0888-7543 08887543 Elsevier |
shingle_catch_all_4 | Pilia, G. Little, R.D. Aissani, B. Bernardi, G. Schlessinger, D. Isochores and CpG Islands in YAC Contigs in Human Xq26.1-qter 0888-7543 08887543 Elsevier |
shingle_title_1 | Isochores and CpG Islands in YAC Contigs in Human Xq26.1-qter |
shingle_title_2 | Isochores and CpG Islands in YAC Contigs in Human Xq26.1-qter |
shingle_title_3 | Isochores and CpG Islands in YAC Contigs in Human Xq26.1-qter |
shingle_title_4 | Isochores and CpG Islands in YAC Contigs in Human Xq26.1-qter |
sigel_instance_filter | dkfz geomar wilbert ipn albert fhp |
source_archive | Elsevier Journal Backfiles on ScienceDirect 1907 - 2002 |
timestamp | 2024-05-06T08:42:53.297Z |
titel | Isochores and CpG Islands in YAC Contigs in Human Xq26.1-qter |
titel_suche | Isochores and CpG Islands in YAC Contigs in Human Xq26.1-qter GC levels were assessed at 37 loci across 30 Mb of Xq26.1-qter, a region physically mopped in overlapping yeast artificial chromosome clones. In 8 Mb of R band Xq26, GC is relatively high (up to 44%) in the proximal 4 Mb and relatively low (40-41%) in the distal 4 Mb. Consistently low GC values (38-41%) are observed in G band Xq27. In contrast, further toward the telomere in Xq28, the GC level rises progressively to reach 52% at 2 to 4 Mb from the end of the chromosome; this region is delimited by low GC loci. Across these regions of Xq, the content of rare-cutter restriction enzyme sites containing CpG, including 'CpG islands' in the most completely mapped Xq26-27.1 region, is correlated with GC level. Isochore mapping can thus provide one index of putative gene content across mapped regions. |
topic | W WW-YZ |
uid | nat_lic_papers_NLZ183735269 |