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一种新型牛乳铁蛋白肽FKCRRWQWRM可抑制念珠菌细胞生长并激活中性粒细胞。

A novel bovine lactoferrin peptide, FKCRRWQWRM, suppresses Candida cell growth and activates neutrophils.

作者信息

Ueta E, Tanida T, Osaki T

机构信息

Department of Oral Surgery, Kochi Medical School, Nankoku-city, Japan.

出版信息

J Pept Res. 2001 Mar;57(3):240-9. doi: 10.1111/j.1399-3011.2001.00821.x.

Abstract

To identify potent new antifungal agents, the Candida cell growth inhibitory activities of six lactoferrin (Lf) peptides consisting of 6-25 amino acid residues (peptide 1, FKCRRWQWRMKKLGAPSITCVRRAF lactoferricin B; peptide 2, FKCRRWQWRM; peptide 2', FKARRWQWRM; peptide 3, GAPSITCVRRAF; peptide 4, RRWQWR; and peptide 5, RWQWRM) were examined. Of these, peptide 2 strongly suppressed the multiplication of Candida cells, but other peptides showed only weak activities. In two strains of C. albicans, the minimum inhibitory concentration 100 of peptide 2 (17.3+/-2.2 microM and 17.5+/-2.4 microM) was close to that of miconazole (13.0+/-1.7 microM and 13.1+/-1.6 microM) but markedly different from that of amphotericin B (0.52+/-0.09 microM and 0.56+/-0.11 microM). The suppression of Candida cell growth was additively increased by a combination of peptide 2 with amphotericin B and miconazole. Peptides 1, 3, 4 and 5 and Lf suppressed iron uptake by Candida cells, inversely correlated with their Candida cell growth inhibition activities. However, iron uptake was not inhibited by peptide 2. In addition, peptide 2 upregulated Candida cell killing activity of polymorphonuclear leukocytes (PMN) increasing their superoxide generation, protein kinase C activity, p38 MAPK activity and the expression of p47phox. These results indicated that the main antimicrobial activity of the Lf peptides is dependent on the N-terminal half of Lf and that the PMN upregulatory activity of peptide 2 and additive function of peptide 2 with antifungal drugs are useful for prophylaxis and control of candidiasis.

摘要

为了鉴定有效的新型抗真菌剂,检测了六种由6至25个氨基酸残基组成的乳铁蛋白(Lf)肽(肽1,FKCRRWQWRMKKLGAPSITCVRRAF乳铁传递蛋白B;肽2,FKCRRWQWRM;肽2',FKARRWQWRM;肽3,GAPSITCVRRAF;肽4,RRWQWR;以及肽5,RWQWRM)对念珠菌细胞生长的抑制活性。其中,肽2强烈抑制念珠菌细胞的增殖,但其他肽仅表现出微弱的活性。在两株白色念珠菌中,肽2的最小抑菌浓度100(17.3±2.2微摩尔/升和17.5±2.4微摩尔/升)与咪康唑(13.0±1.7微摩尔/升和13.1±1.6微摩尔/升)接近,但与两性霉素B(0.52±0.09微摩尔/升和0.56±0.11微摩尔/升)明显不同。肽2与两性霉素B和咪康唑联合使用时,对念珠菌细胞生长的抑制作用呈相加性增加。肽1、3、4和5以及Lf抑制念珠菌细胞对铁的摄取,这与其对念珠菌细胞生长的抑制活性呈负相关。然而,肽2不抑制铁摄取。此外,肽2上调多形核白细胞(PMN)对念珠菌细胞的杀伤活性,增加其超氧化物生成、蛋白激酶C活性、p38丝裂原活化蛋白激酶活性以及p47phox的表达。这些结果表明,Lf肽的主要抗菌活性取决于Lf的N端半段,并且肽2的PMN上调活性以及肽2与抗真菌药物的相加作用对念珠菌病的预防和控制是有用的。

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