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蓝斑背肛海兔神经连索外表层超微量多肽组成的研究
引用本文:吴韩志,黄河清,叶庆华,黄河宁.蓝斑背肛海兔神经连索外表层超微量多肽组成的研究[J].厦门大学学报(自然科学版),2004,43(5):710-713.
作者姓名:吴韩志  黄河清  叶庆华  黄河宁
作者单位:1. 厦门大学生命科学学院,福建省化学生物重点实验室,福建,厦门,361005
2. 三明学院化学与生物工程系
基金项目:国家自然科学基金(40276033),福建省自然科学基金(C0310006)资助
摘    要:蓝斑背肛海兔(NotarcusleachiicirrosusStimpson,NLCS)中枢神经系统缺少腹神经节.选用基质辅助激光解吸电离化飞行时间(Matrix assistedlaserdesorptionionization/timeofflight,MALDI TOF)质谱技术研究NLCS中枢神经系统连索外表层的超微量的多肽组成和分布时,发现该连索外表层含有丰富的酸性多肽(Aicdicpeptide,AP)的酶解片段和其他多肽组分.不同NLCS个体的中枢神经连索外表层多肽分布与组分有些差异,推测这些神经多肽可能参与中枢神经系统的信息传导和行为的可塑性.在不同的神经连索之间发现相同一级结构和聚合体的多肽组成,认为这些组份以不同的形式分泌到神经节或连索外表层参与信息传导活动,起到相似或相同的生理功能.

关 键 词:海兔  神经连索  神经肽  质谱
文章编号:0438-0479(2004)05-0710-04
修稿时间:2003年8月7日

Study on Ultra Micro-dose Peptides Composition on the Surface of Nervous Connective from Notarcus leachii cirrosus Stimpson
WU Han-zhi,HUANG He-qing,YE Qing-hua,HUANG He-ning.Study on Ultra Micro-dose Peptides Composition on the Surface of Nervous Connective from Notarcus leachii cirrosus Stimpson[J].Journal of Xiamen University(Natural Science),2004,43(5):710-713.
Authors:WU Han-zhi  HUANG He-qing  YE Qing-hua  HUANG He-ning
Institution:WU Han-zhi,HUANG He-qing~*,YE Qing-hua,HUANG He-ning~
Abstract:The central nervous system from the Notarcus leachii cirrosus Stimpson (NLCS) lacked its abdominal ganglion. MALDI-TOF(Matrix-assisted laser desorption ionization/time of flight) mass spectrometry was selected to study the ultra micro-peptides compositions and distribution on the surface of central nervous connective from the NLCS,which were found to have enzymolytic produces of acidic peptide and other peptide compositions abundantly.There are discrepancy of the peptide compositions and distribution somewhat on the surface of central nervous connective from the different NLCS.It was suggested that these peptides take part in signal transduction of central nervous system and the plasticity of behavior.In addition,the same primary structure and polymer of peptides are found in different nervous connective.These compositions in different structure excrete to the surface of ganglion and nervous connective,participate in signal transduction and behave the same physiological function.
Keywords:Aplysia  nervous connective  neuro-peptide  mass spectrometry
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