ϸ°ûÄÚµ°°×·ºËØ»¯¾­ÓÉ·ºËØ-µ°°×øÌå;¾¶ÊµÏÖ¡£ÔÚÕâ¸ö¹ý³ÌÖУ¬Ò»ÏµÁÐø£¨E1¡¢E2ºÍE3£©µ÷¿Ø·ºËØÁ´×éºÏÌ壬¶øÇÒµ±ÕýÈ·µÄ·ºËØ»¯·¢ÉúÖ®ºó£¬Ò»¸öÈßÓàµÄ»òÊÜËðµÄµ°°×¾Í»á±»µ°°×øÌ寯»µµô£¬¹ØÓÚ·ºËØÁ´ÐγɵĻúÖÆÉв»ÊÇÊ®·ÖÇå³þ¡£

À´×ÔÖйú¿ÆÑ§Ôº¶¯ÎïÑо¿Ëù£¬ÃÀ¹ú¹úÁ¢ÎÀÉúÑо¿ÔºµÄÑо¿ÈËÔ±½üÆÚ·¢ÏÖÔÚµ°°×ÖÊ·ºËØ»¯ÐÞÊιý³ÌÖл¹´æÔÚÒ»¸ö¶îÍâµÄ·ºËØÁ´ÑÓÉìÒò×Ó£¬ËûÃǽÒʾÁ˵ÚÒ»¸ö±»±»¼ø¶¨³öÀ´µÄE4£ºUfd2pÑÓ³¤·ºËØÁ´µÄ×÷ÓûúÖÆ£¬Õ⽫´ó´óµÄÍØÕ¹ÁËÈËÃǶԵ°°×ÖÊ·ºËØ»¯ÐÞÊÎÁìÓòµÄÈÏʶ¡£

ÕâÒ»Ñо¿³É¹û¹«²¼ÔÚ2ÔÂ7ÈÕµÄNature CommunicationsÔÓÖ¾ÉÏ£¬ÎÄÕµÄͨѶ×÷ÕßÊǶ¯ÎïÑо¿ËùÀîÎÀÑо¿Ô±£¬ÖúÀíÑо¿Ô±Áõ³¬²©Ê¿ÎªµÚÒ»×÷Õß¡£ÀîÎÀÑо¿×éÖ÷Òª´Óʵ°°×ÖÊ·ºËØ»¯ºÍÀà·ºËØ»¯ÐÞÊεķÖ×Ó»úÖÆ¼°ÆäÔÚÅä×Ó·¢ÉúÖеÄ×÷ÓûúÖÆ·½ÃæµÄÑо¿£¬´ÓÅä×Ó³ÉÊì¡¢¼õÊý·ÖÁÑ¡¢Ìåϸ°û-Éúֳϸ°û»¥×÷ºÍ¸Éϸ°ûά³ÖÓë·Ö»¯ËÄ·½ÃæÏµÍ³ÉîÈëµØ½âÎö·ºËØ»¯ºÍÀà·ºËØ»¯ÐÞÊÎÔÚÅä×Ó·¢ÉúºÍ¸Éϸ°ûά³Ö¹ý³ÌÖеĵ÷¿Ø»úÀí¡£

µ°°×ÖÊ·ºËØ»¯ÐÞÊÎÐèÒª·ºËؾ­¹ý·ºËؼ¤»îø£¨E1£©¡¢·ºËؽӺÏø£¨E2£©ÒÔ¼°·ºËØÁ¬½Óø£¨E3£©µÄÖð²½´ß»¯×ªÒƵ½µ×Îïµ°°×ÉÏ¡£ÔÚÕâÆªÎÄÕÂÖУ¬Ñо¿ÈËԱͨ¹ýÔÚÌåÍâÖØ¹¹Ufd4p-Ufd2p·ºËØ´ß»¯Ìåϵ£¬·¢ÏÖUfd2p¿ÉÒÔÔÚUfd4pºÏ³ÉµÄLys29Á¬½Ó·ºËØÁ´ÉÏ´ß»¯Lys48Á¬½ÓµÄ¶àλµãµ¥·ºËØ»¯ÐÞÊνø¶øÐγÉÊ÷֦״·ºËØÁ´¡£ÔÚÀëÌåºÍÔÚÌåÌõ¼þÏ£¬¾ù¿ÉÒÔÔÚ·ºËØÈںϵ°°×Ub-V-GFpÉϼì²âµ½ÕâÖÖÊ÷֦״·ºËØÁ´¡£

Ufd2p´ß»¯´ËÀà·´Ó¦ÐèÒªÆä°±»ù¶ËµÄÁ½¸ö»·ÇøÊ¶±ðUb-V-GFpÉϵÄLys29Á¬½Ó·ºËØÁ´¡£Ufd2p´ß»¯ºÏ³ÉµÄÕâÖÖÊ÷֦״·ºËØÁ´¿ÉÒÔ±»µ°°×øÌåÏνӵ°°×£¬ÈçRad23p£¬Dsk2pÒÔ¼°Rpn10pµÈʶ±ð£¬½ø¶ø½éµ¼ÆäÐÞÊε×Îïµ°°×µÄ½µ½â¡£Òò´Ë£¬Ufd2p¿ÉÒÔ×÷ΪһÖÖÐÂÐ͵ķºËØÁ´×ª»»Òò×Ó£¬½«·Ç½µ½âÐÍ·ºËØÁ´ÐźÅת»»Îª¿É±»µ°°×øÌåʶ±ðµÄ½µ½âÐÍ·ºËØÁ´Ðźţ¬½ø¶ø´Ù½øÐÞÊε×ÎïµÄ½µ½â¡£Ufd2pÕâÖÖ·ºËØÁ´Á¬½ÓÐÎʽת»»µÄ¹¦ÄÜÔÚÄÚÖÊÍøÏà¹ØµÄµ°°×Öʽµ½â£¨ERAD£©¡¢OLEͨ·ÒÔ¼°ËáÐÔÌõ¼þÄÍÊܵȷ½Ãæ¿ÉÒÔ·¢»ÓÖØÒª×÷Óá£

ÕâÏîÑо¿½ÒʾÁËUfd2p£¨E4£©ÑÓ³¤·ºËØÁ´µÄ×÷ÓûúÖÆ£¬Ufd2p×÷Ϊ·ºËØÁ´×ª»»Òò×ӵŦÄÜ´ó´óµÄÍØÕ¹ÁËÈËÃǶԵ°°×ÖÊ·ºËØ»¯ÐÞÊÎÁìÓòµÄÈÏʶ¡£

£¨ÉúÎïͨ£ºÍòÎÆ£©

´ËÏîÑо¿²ÉÓÃÁËThermo ScientificµÄEZ-link sulfo-NHS-Biotin½øÐÐÉúÎïËØ±ê¼Ç£¬Ë÷È¡Ïà¹Ø¼¼Êõ×ÊÁÏ

×÷Õß¼ò½é£º

ÀîÎÀ£¬ÏÖΪÖйú¿ÆÑ§Ôº¶¯ÎïÑо¿Ëù¸Éϸ°ûÓëÉúÖ³ÉúÎïѧ¹ú¼ÒÖØµãʵÑéÊÒÑо¿Ô±£¬µ°°×ÖÊÐÞÊÎÓëÅä×Ó·¢ÉúÑо¿×é×鳤£¬¹ú¼ÒÖØµãÑз¢¼Æ»®Ê×ϯ¿ÆÑ§¼Ò¡£1998ÄêºÍ2003ÄêÓÚÀ¼ÖÝ´óѧ»ñµÃѧʿ¼°²©Ê¿Ñ§Î»¡£2003Äê8ÔÂÖÁ2009Äê5Ô·ֱðÔÚÇ廪´óѧÉúÎï¿ÆÑ§Óë¼¼ÊõϵºÍÃÀ¹ú¹úÁ¢½¡¿µÑо¿ÔºNIDDK´Óʲ©Ê¿ºóÑо¿¡£2009ÄêÖйú¿ÆÑ§Ôº¡°****¡±Òý½øº£Íâ½Ü³öÈ˲Å¡£ÀîÎÀÑо¿Ô±Ö÷Òª´Óʵ°°×ÖÊ·ºËØ»¯ºÍÀà·ºËØ»¯ÐÞÊεķÖ×Ó»úÖÆ¼°ÆäÔÚÅä×Ó·¢ÉúÖеÄ×÷ÓûúÖÆ·½ÃæµÄÑо¿£¬´ÓÅä×Ó³ÉÊì¡¢¼õÊý·ÖÁÑ¡¢Ìåϸ°û-Éúֳϸ°û»¥×÷ºÍ¸Éϸ°ûά³ÖÓë·Ö»¯ËÄ·½ÃæÏµÍ³ÉîÈëµØ½âÎö·ºËØ»¯ºÍÀà·ºËØ»¯ÐÞÊÎÔÚÅä×Ó·¢ÉúºÍ¸Éϸ°ûά³Ö¹ý³ÌÖеĵ÷¿Ø»úÀí£¬ÎªÉúÖ³ºÍË¥ÀÏÏà¹Ø¼²²¡µÄÕïÖÎÌṩеİеãºÍ˼·¡£Æù½ñÒÑÔÚNature¡¢EMBO J¡¢pNAS¡¢Autophagy¡¢Cell Res¡¢Nucleic Acids Res¡¢pLoS GenetµÈÔÓÖ¾·¢±íÂÛÎÄ50ÓàÆª¡£

Ñо¿ÁìÓò£º
±¾Ñо¿×鹨ע¡°Éú¡±Óë¡°ËÀ¡±ÕâÁ½´óÉúÃüÓÀºãÖ÷Ì⣬¾ßÌåÀ´Ëµ°üÀ¨£º
1£©Åä×Ó·¢ÉúÓÈÆäÊǼõÊý·ÖÁѵķ­ÒëºóÐÞÊε÷¿Ø¡£Åä×Ó·¢ÉúÊܵ½×ªÂ¼¡¢·­ÒëºÍ·­ÒëºóÐÞÊεĵ÷¿Ø£¬¶øµ°°×Öʵķ­ÒëºóÐÞÊÎÓÈÆäÊÇ·ºËØ»¯¼°Àà·ºËØ»¯ÐÞÊÎÔÚ¾«×ÓÐÎ̬½¨³É¡¢¼õÊý·ÖÁѺÍÌåϸ°û-Éúֳϸ°û»¥×÷µ÷¿Ø¹ý³ÌÖеķ¢»ÓÖØÒª×÷Óá£ÎÒÃÇÒ»·½Ã潫ͨ¹ý¸÷ÖÖ;¾¶Ñ°ÕÒÅä×Ó·¢ÉúÓÈÆäÊǼõÊý·ÖÁÑÌØÒìµÄ·ºËØ»¯ºÍÀà·ºËØ»¯ÐÞÊΣ¬²¢Ñо¿ËüÃÇÔڸùý³ÌÖеŦÄܺÍ×÷ÓûúÖÆ£»ÁíÒ»·½Ã潫ÒÔͬ²½»¯µÄ¼õÊý·ÖÁѺ;«×Ó·¢ÉúÌåϵΪ»ù´¡£¬Í¨¹ý¶¨Á¿µ°°×ÖÊ×éѧɸѡÅä×Ó·¢Éú¹ý³ÌÖеÄÌØ¶¨ÐÞÊÎλµã£¬È»ºóÒÔ½ÍĸºÍСÊóΪģÐÍÑо¿ËüÃÇÔڴ˹ý³Ìµ±ÖеŦÄܺÍ×÷ÓûúÖÆ¡£
2£©×éµ°°×ÐÞÊÎÔÚ¼õÊý·ÖÁÑÒÔ¼°¸Éϸ°ûά³ÖºÍ·Ö»¯ÖеŦÄܺÍ×÷ÓûúÖÆ¡£×éµ°°×ÐÞÊÎÊDZí¹ÛÒÅ´«Ñ§µÄÖØÒªÐÎʽ֮һ£¬ÆäÔÚ¼õÊý·ÖÁÑ¡¢¸Éϸ°ûά³ÖºÍ·Ö»¯µÈ¹ý³Ìµ±Öз¢»ÓÁËÖØÒª×÷Óá£Ä¿Ç°£¬ÎÒÃÇÕýÔÚÑо¿×éµ°°×H2AºÍH2BµÄ·ºËØ»¯ÐÞÊÎÔÚ¼õÊý·ÖÁѺ͸Éϸ°ûά³ÖÓë·Ö»¯¹ý³ÌÖеŦÄܺÍ×÷ÓûúÖÆ¡£´ËÍ⣬ÎÒÃǽ«Ò»·½ÃæÍ¨¹ý¹¦ÄÜɸѡѰÕÒ×éµ°°×É϶ÔÓÚ¼õÊý·ÖÁѺ͸Éϸ°ûά³ÖÓë·Ö»¯ÖØÒªµÄλµã£¬²¢Ñо¿ËüÃǵŦÄܺÍ×÷ÓûúÖÆ£»ÁíÒ»·½ÃæÍ¨¹ýµ°°×ÖÊ×éѧÑо¿×éµ°°×ÔÚÕâЩ¹ý³Ìµ±ÖеÄÐÞÊÎÆ×±ä»¯£¬½øÒ»²½½âÎöÕâЩÐÞÊÎÔڴ˹ý³Ìµ±ÖеŦÄܺÍ×÷ÓûúÖÆ¡£
3£©ÉúÖ³ºÍË¥ÀÏÏà¹Ø¼²²¡µÄ·­ÒëºóÐÞÊε÷¿Ø»ù´¡¡£ÎªÁËÑо¿µ°°×ÖÊ·­ÒëºóÐÞÊÎÔÚÉúÖ³ºÍË¥ÀÏÏà¹Ø¼²²¡ÖеÄÖ²¡»úÀí£¬ÎÒÃǽ«Ò»·½ÃæÊÕ¼¯ÁÙ´²Éϲ»Ôв»ÓýÖ¢¼°Ë¥ÀÏÏà¹Ø¼²²¡µÈ»¼ÕßÑù±¾£¬ÀûÓÃÍâÏÔ×Ó²¶»ñ»òÕßÊÇÈ«»ùÒò×é²âÐòѰÕÒÏàÓ¦»¼ÕßµÄÖ²¡»ùÒò£¬È»ºóͨ¹ýСÊóÄ£ÐÍÑéÖ¤ÏàÓ¦»ùÒòµÄ¹¦Äܲ¢Ñо¿ÆäÖ²¡»úÖÆ£»ÁíÒ»·½Ã潫¸ù¾ÝÎÒÃÇÒÑÓеIJ»ÓýºÍÔçË¥¼²²¡Ä£ÐÍ£¬ÁÙ´²ÉÏɸ²éÀàËÆ»¼ÕßµÄÏàÓ¦»ùÒòÊÇ·ñ´æÔÚÀàËÆµÄÍ»±ä£¬Ì½ÌÖÆä»úÖÆ²¢Í¨¹ý»ùÒòÖÎÁƺ͸Éϸ°ûµÈ·½Ê½Ì½Ë÷¿ÉÄܵÄÕïÖÎÊֶΡ£
×ÜÖ®£¬¡°·½Éú·½ËÀ£¬·½ËÀ·½Éú¡±£¬ÎÒÃǽ«ÔÚÉúÓëËÀÖ®¼ä¸ÐÎòÉúÃüµÄѲ»Ø¡£

Ô­ÎÄÕªÒª£º

Ufd2p synthesizes branched ubiquitin chains to promote the degradation of substrates modified with atypical chains

Ubiquitination of a subset of proteins by ubiquitin chain elongation factors (E4), represented by Ufd2p in Saccharomyces cerevisiae, is a pivotal regulator for many biological processes. However, the mechanism of Ufd2p-mediated ubiquitination is largely unclear. Here, we show that Ufd2p catalyses K48-linked multi-monoubiquitination on K29-linked ubiquitin chains assembled by the ubiquitin ligase (Ufd4p), resulting in branched ubiquitin chains. This reaction depends on the interaction of K29-linked ubiquitin chains with two N-terminal loops of Ufd2p. Only following the addition of K48-linked ubiquitin to substrates modified with K29-linked ubiquitin chains, can the substrates be escorted to the proteasome for degradation. We demonstrate that this ubiquitin chain linkage switching reaction is essential for ERAD, oleic acid and acid pH resistance in yeast. Thus, our results suggest that Ufd2p functions by switching ubiquitin chain linkages to allow the degradation of proteins modified with a ubiquitin linkage, which is normally not targeted to the proteasome.