¹ØÓÚlife scienceµÄÎÊÌ⣺regulatory sequence - turnover and degenerate nature
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¹ØÓÚlife scienceµÄÎÊÌ⣺regulatory sequence - turnover and degenerate nature
Regulatory sequences (e.g., transcription factor binding sites), unlike protein-coding regions, are subject to rapid turnover.

Challenges (in regulatory sequence identification) included the large non-coding search space in the human genome (98% of 3¡Á109 bp), the small size and degenerate nature of transcription factor binding sites, and most importantly the lack of experimental training sets for computational methods to identify such sequences in a global manner.


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Regulatory sequences (e.g., transcription factor binding sites), unlike protein-coding regions, are subject to rapid turnover. Õâ¾ä»°À´×Ô(Webb Miller et.al., "Comparative Genomics", annual review of Genomics and Human Genetics Vol.5:15-56)

Õâ¾ä»°ºóÃæ¸úÁËreference¡£ÔÚreference38µÄabstractÖУ¬×÷ÕßÌáµ½£º"estimated that 32%-40% of the human functional sites are not functional in rodents. This is evidence that there is widespread turnover of transcription factor binding sites"
ÔÚintroductionÖУ¬×÷Õß˵µ½:"Individual binding sites may exhibit relatively little conservation, either because of the degeneracy of the transcription factor binding requirements or because their small size makes it relatively likely that a new functional site will arise by chance."

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Challenges (in regulatory sequence identification) included the large non-coding search space in the human genome, the small size and degenerate nature of transcription factor binding sites, and most importantly the lack of experimental training sets for computational methods to identify such sequences in a global manner.

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×÷ÕߣºË®Ñ¼×Ó (µÈ¼¶£º14 - ÌìÈ˺ÍÒ»£¬·¢Ìû£º9284) ·¢±í£º2008-04-29 18:08:00¡¡ 3Â¥ ÆÀ·Ö£º
ÎÒ¾õµÃÓÐÏàͬµÄÒâ˼µ«turnoverÖ¸µÄÓ¦¸Ã²»ÊÇsequence±¾ÉíµÄ±ä»¯£¬¶øÊÇÒ»¸öregulatory sequence±»ÁíÒ»¸öregulatory sequenceËùÈ¡´ú¡£ Regulatory sequences (e.g., transcription factor binding sites), unlike protein-coding regions, are subject to rapid turnover. Õâ¾ä»°À´×Ô(Webb Miller et.al., "Comparative Genomics", annual review of Genomics and Human Genetics Vol.5:15-56) Õâ¾ä»°ºóÃæ¸úÁËreference¡£ÔÚreference38µÄabstractÖУ¬×÷ÕßÌáµ½£º"estimated that 32%-40% of the human functional sites are not functional in rodents. This is evidence that there is widespread turnover of transcription factor binding sites" ÔÚintroductionÖУ¬×÷Õß˵µ½:"Individual binding sites may exhibit relatively little conservation, either because of the degeneracy of the transcription factor binding requirements or because their small size makes it relatively likely that a new functional site will arise by chance." ËùÒÔÎÒµÄÀí½âÊÇ£¬TurnoverÖ¸µÄÊÇÒ»¸öregulatory sequence±»ÁíÒ»¸öregulatory sequenceËùÈ¡´ú¡£ ÔÚ½ø»¯ÖУ¬ÓÉÓÚregulatory sequenceÏà¶Ô½Ï¶Ì£¬ÒÔ¼ (more...)
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