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选择性氨基酸取代对大鼠空肠黏膜中神经肽Y抗分泌效力的影响。

The effects of selective amino acid substitution upon neuropeptide Y antisecretory potency in rat jejunum mucosa.

作者信息

Cox H M, Krstenansky J L

机构信息

Department of Pharmacology, University of Cambridge, United Kingdom.

出版信息

Peptides. 1991 Mar-Apr;12(2):323-7. doi: 10.1016/0196-9781(91)90020-p.

Abstract

The antisecretory potency of NPY and a series of truncated and structural analogues of NPY have been tested upon mucosal preparations of rat small intestine. Single amino acid substitutions, i.e., [Ile34]NPY, [Pro34]NPY, resulted in severe attenuation and loss of biological activity, respectively, and neither peptide affected NPY responses. An agonist order of potency: NPY greater than or equal to [Glu16,Ser18,Ala22,Leu28,31]NPY (ESALL-NPY) greater than [Cys2,Aoc5-24,DCys27]NPY (C2-NPY) greater than [Aoc5-24]NPY greater than [Des-Ser3,Des- Lys4]C2-NPY much greater than [Cys5,Aoc7-20,DCys24]NPY (C5-NPY) greater than equal to [DCys7,Aoc8-17, Cys20]NPY (C7-NPY) greater than [Aoc8-17]NPY greater than or equal to [Ile34]C7-NPY much greater than [Aoc2-27]NPY much greater than [Pro34]C2-NPY was obtained. The use of analogues based upon the tertiary structural model of NPY with varying amounts of N- and C-terminal helical regions removed and replaced with a single 8-aminooctanoic acid residue (Aoc) has allowed us to assess the structural requirements for activation of the regions in close apposition to each other. The polyproline helix, beta-turn and majority of the amphipathic alpha-helix serve a structural role bringing N- and C-terminal residues together for optimal receptor recognition and activation.

摘要

已在大鼠小肠黏膜制剂上测试了神经肽Y(NPY)及其一系列截短型和结构类似物的抗分泌效力。单个氨基酸取代,即[Ile34]NPY、[Pro34]NPY,分别导致生物活性严重减弱和丧失,且这两种肽均不影响NPY反应。激动剂效力顺序为:NPY≥[Glu16,Ser18,Ala22,Leu28,31]NPY(ESALL-NPY)>[Cys2,Aoc5-24,DCys27]NPY(C2-NPY)>[Aoc5-24]NPY>[Des-Ser3,Des-Lys4]C2-NPY>>[Cys5,Aoc7-20,DCys24]NPY(C5-NPY)≥[DCys7,Aoc8-17,Cys20]NPY(C7-NPY)>[Aoc8-17]NPY≥[Ile34]C7-NPY>>[Aoc2-27]NPY>>[Pro34]C2-NPY。使用基于NPY三级结构模型的类似物,去除不同数量的N端和C端螺旋区域并用单个8-氨基辛酸残基(Aoc)取代,这使我们能够评估彼此紧密相邻区域激活的结构要求。多聚脯氨酸螺旋、β-转角和大部分两亲性α-螺旋起到结构作用,将N端和C端残基聚集在一起,以实现最佳的受体识别和激活。

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