º«¾´¶«Ñо¿×éCell×Ó¿¯½âÎö½ÚʳΪºÎÄÜʹÊÙÃüÑÓ³¤
3ÔÂ8ÈÕ£¬¹ú¼ÊѧÊõÆÚ¿¯Cell Metabolism ·¢±íÁËÖйú¿ÆÑ§ÔºÉϺ£ÉúÃü¿ÆÑ§Ñо¿Ôº¼ÆËãÉúÎïѧ»ï°éÑо¿Ëùº«¾´¶«Ñо¿×éµÄÂÛÎÄA Systems Approach to Reverse Engineer Lifespan Extension by Dietary Restriction¡£¸ÃÑо¿½ÒʾÁ˽Úʳµ¼ÖÂÏß³æÊÙÃüÑÓ³¤µÄ·Ö×Ó»úÖÆ¡£
ÖÚËùÖÜÖª£¬Ë¥ÀϹغõÈËÀàµÄ½¡¿µºÍÊÙÃü¡£Ëæ×ÅÉúÎïѧ֪ʶµÄ»ýÀÛÒÔ¼°ÏÖ´úÉúÎï¼¼ÊõµÄ·¢Õ¹£¬¹ØÓÚË¥ÀϵÄÑо¿µÃµ½Á˸ü¶àµÄÖØÊÓ£¬Ò²´ïµ½ÁËǰËùδÓеÄÉî¶È¡£½Úʳ£¬×÷ΪÔÚ¶à¸öÎïÖÖÖпÉÒÔÑÓ³¤ÊÙÃüµÄÖØÒªÊֶΣ¬Æä·Ö×Ó»úÖÆµÄÑо¿ÊÇË¥ÀÏÑо¿µÄÒ»¸ö¾µä·¶Ê½¡£Ñо¿±íÃ÷£¬²»ÉÙÓëÓªÑø¸ÐÖªºÍÓ¦¼¤·´Ó¦Ïà¹ØµÄÒò×ÓºÍÐźÅͨ·¾ù²ÎÓë»òµ÷¿ØÁ˽Úʳµ¼ÖµÄÑÓÊÙÏÖÏó£¬È»¶øºÜÉÙÓе¥Ò»Òò×ÓµÄÒÅ´«Ñ§¸ÉÈÅ¿ÉÒÔÍêÈ«º¸Ç½ÚʳËù´øÀ´µÄÓÐÒæÓ°Ïì¡£¸ü½øÒ»²½µÄ£¬ÕâЩµ÷¿ØÒò×ÓºÍÐźÅͨ·Êǽ鵼Á˽Úʳ·´Ó¦µÄ²»Í¬²àÃæ£¬»¹ÊÇËüÃÇÔÚ²»Í¬µÄ½×¶ÎÆð×÷Óã¬ÓÖ»òÕßËüÃÇÖ®¼ä»¹ÓÐÏ໥×÷Óã¬ÕâЩ¶¼ÉÐÊôδ֪¡£
º«¾´¶«Ñо¿×éµÄ¹¤×÷Ê×ÏȲúÉúÁËÏß³æÔÚÁ½ÖÖ½Úʳ·½°¸ÏÂÒÔ¼°¶ÔÕÕ×éµÄʱ¼äÐòÁбí´ïÆ×Êý¾Ý£¬²¢»ùÓڸñí´ïÆ×·ÖÎö·¢ÏÖ£¬½ÚʳµÄÔçÆÚºÍÍíÆÚÏìÓ¦·Ö±ðÓë´úлºÍϸ°ûÖÜÆÚ/DNAËðÉËÓйء£Ñо¿Õß½Ó×ŲÉÓÃȫеķ´Ïò¹¤³ÌµÄ²ßÂÔÕûºÏеÄת¼×éÓ빫¹²Êý¾Ý¿âÖÐÒÅ´«¸ÉÈźóµÄת¼×éÊý¾Ý£¬¹¹½¨Á˽ÚʳÏìÓ¦µÄÍøÂçÄ£ÐÍ¡£¸ÃÄ£ÐͰüº¬Èý¸öÖ÷Ҫģ¿é£¬ÓëÖ®ÏàÓ¦µÄÊDz»Í¬µÄµ÷¿ØÒò×Ó´ØÒÔ¼°²»Í¬Ê±ÆÚµÄ½ÚʳÏìÓ¦¡£
½ÓÏÂÀ´£¬Ñо¿Õßͨ¹ýÒÅ´«Ñ§¸ÉÈÅÕâЩµ÷¿ØÒò×ÓÀ´µ÷½Ú¶ÔÓ¦µÄÄ£¿é£¬·¢ÏÖµ±Ô½¶àµÄÄ£¿é±»µ÷½Úʱ£¬¶ÔÕÕ×éÎ¹ÑøÏÂÏß³æµÄת¼×éÔ½Ç÷ͬÓÚ½ÚÊ³Î¹ÑøÏµÄÇé¿ö¡£ÁíÍ⣬µ±Èý¸öÄ£¿é¾ù±»ÒÅ´«¸ÉÈÅʱ£¬Ïß³æµÄÊÙÃü½«»á¼«´óÑÓ³¤£¬Æ½¾ùÊÙÃü´Ó²»µ½20ÌìÑÓ³¤µ½50ÓàÌ죬²¢ÇÒ½ÚʳҲ²»»áÔÙ¶Ô¸ÃÀàÏß³æÓÐЧ¡£ÕâЩ½á¹ûÌáʾÔÚÈý¸öÄ£¿éµÄͬʱ¸ÉÈÅ¿ÉÒÔÍêÈ«º¸Ç½ÚʳµÄÓÐÒæÓ°Ïì¡£ÉÏÊö½á¹ûºÍ¶¯Ì¬Ä£ÄâµÄ½á¹ûÏà½áºÏ£¬Ìáʾģ¿éÖ®¼ä´æÔڵĴóÁ¿Õý·´À¡»·Ê¹µÃͨ¹ýÒÅ´«Ñ§¸ÉÈÅÍêȫģÄâ½ÚʳµÄÏìÓ¦³ÉΪ¿ÉÄÜ¡£ÕâÏîÑо¿´ÓϵͳÉúÎïѧµÄ½Ç¶È½ÒʾÁ˽Úʳµ÷½ÚË¥ÀϵķÖ×Ó»úÖÆ£¬²¢ÎªË¥ÀϸÉÔ¤²ßÂÔÌṩÁËиÅÄ¼´½ÚʳÒÀÀµÓÚÇá΢µÄ¶àÄ£¿éÐͬÈŶ¯£¬¶øÇá΢µÄ¶àÄ£¿éÐͬÈŶ¯Ô¶ÓÅÓÚµ¥Ä£¿é°ÐÏòµÄÈŶ¯£¬Ö»ÓÐͨ¹ý¶àÄ£¿éÐͬÈŶ¯²ÅÄÜÊÕ»ñ½ÚʳµÄ³¤ÊÙ¹¦Ð§¡£
¸ÃÑо¿µÃµ½Á˹ú¼Ò×ÔÈ»¿ÆÑ§»ù½ð¡¢ÖпÆÔº¡¢¿Æ¼¼²¿ÒÔ¼°ÃÀ¹ú¹úÁ¢ÎÀÉúÑо¿ÔºµÈÏîÄ¿×ÊÖú¡£
º«¾´¶«ÍŶÓÀûÓÃÎÞÆ«µÄϵͳÉúÎïѧ·½·¨Ñо¿ÐãÀöÒþ¸ËÏß³æµÄ½Úʳµ÷¿ØÍøÂ磬·¢ÏÖÁËÈý¸öת¼µ÷¿ØÄ£¿é£¬×îÖÕͨ¹ý¶ÔÕâÈý¸öÄ£¿éͬʱ½øÐÐÒÅ´«Ñ§¸ÉÈÅ£¬µÃµ½Á˶ԽÚʳµÄÑÓÊÙЧӦ²»Ãô¸ÐµÄÊÙÃü³¬³¤µÄÏ߳档
ÔÎÄÕªÒª£º
A Systems Approach to Reverse Engineer Lifespan Extension by Dietary Restriction
Dietary restriction (DR) is the most powerful natural means to extend lifespan. Although several genes can mediate responses to alternate DR regimens, no single genetic intervention has recapitulated the full effects of DR, and no unified system is known for different DR regimens. Here we obtain temporally resolved transcriptomes during calorie restriction and intermittent fasting in Caenorhabditis elegans and find that early and late responses involve metabolism and cell cycle/DNA damage, respectively. We uncover three network modules of DR regulators by their target specificity. By genetic manipulations of nodes representing discrete modules, we induce transcriptomes that progressively resemble DR as multiple nodes are perturbed. Targeting all three nodes simultaneously results in extremely long-lived animals that are refractory to DR. These results and dynamic simulations demonstrate that extensive feedback controls among regulators may be leveraged to drive the regulatory circuitry to a younger steady state, recapitulating the full effect of DR.