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含有具有强效抗癌活性的α,α-二烷基化氨基酸的P物质类似物。

Substance P analogs containing alpha,alpha-dialkylated amino acids with potent anticancer activity.

作者信息

Prasad Sudhanand, Mathur Archna, Jaggi Manu, Singh Anu T, Mukherjee Rama

机构信息

Dabur Research Foundation, 22 Site IV, Sahibabad, Ghaziabad 201010, India.

出版信息

J Pept Sci. 2007 Aug;13(8):544-8. doi: 10.1002/psc.886.

Abstract

Six analogs (peptides 1-6) of the potent substance P (SP) derivative known as 'Antagonist D' were synthesized by substituting constrained amino acids Aib or Acp (cycloleucine, 1-amino cyclopentane carboxylic acid) at different positions in the Antagonist D sequence: D-Arg(1)-Pro(2)-Lys(3)-Pro(4)-D-Phe(5)-Gln(6)-D-Trp(7)-Phe(8)-D-Trp(9)-Leu(10)-Leu(11)-NH(2). In the preliminary in vitro antiproliferative screening of the analogs on different human cancer cell lines by 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT) assay, peptide 1 was found to be the most active. Further, peptide 1 was butanoylated (analog 5) or octanoylated (analog 6) at the N-terminus. SP analogs 1, 5, and 6 were evaluated in vivo in a xenograft model of human primary colon tumor (PTC) cell line in athymic nude mice and were found to cause tumor regression. This study investigates if the use of the constrained amino acids Aib and Acp in the designed SP analogs can retain the in vitro and in vivo anticancer activities, which could be useful in cancer therapy and drug targeting. Further, the strategy of incorporation of Aib or Acp in biologically active peptides can be exploited in determining the receptor-bound conformation and in transforming these bioactive peptides into pharmacologically useful drugs.

摘要

通过在“拮抗剂D”序列的不同位置取代限制性氨基酸Aib或Acp(环亮氨酸,1-氨基环戊烷羧酸),合成了强效P物质(SP)衍生物“拮抗剂D”的六种类似物(肽1-6):D-Arg(1)-Pro(2)-Lys(3)-Pro(4)-D-Phe(5)-Gln(6)-D-Trp(7)-Phe(8)-D-Trp(9)-Leu(10)-Leu(11)-NH(2)。在通过3-(4,5-二甲基噻唑-2-基)-2,5-二苯基四氮唑溴盐(MTT)测定法对不同人类癌细胞系进行的类似物体外抗增殖初步筛选中,发现肽1活性最高。此外,肽1在N端进行了丁酰化(类似物5)或辛酰化(类似物6)。在无胸腺裸鼠的人原发性结肠肿瘤(PTC)细胞系异种移植模型中对SP类似物1、5和6进行了体内评估,发现它们可导致肿瘤消退。本研究调查了在设计的SP类似物中使用限制性氨基酸Aib和Acp是否能保留体外和体内抗癌活性,这可能对癌症治疗和药物靶向有用。此外,将Aib或Acp掺入生物活性肽的策略可用于确定受体结合构象,并将这些生物活性肽转化为药理学上有用的药物。

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