Liu Yi, Zhang Shuyu, Ling Xiaomei, Li Yuzhen, Zhang Yingmei, Han Wenling, Wang Ying
Department of Pharmacy, Peking University People's Hospital, Beijing 100044, PR China.
J Pept Sci. 2008 Aug;14(8):984-8. doi: 10.1002/psc.1028.
The Chemokine-like factor 1 (CKLF1) is a novel human cytokine and exhibits chemotactic activities on leukocytes. Two peptides named CKLF1-C27 and CKLF1-C19, were obtained from secreted CKLF1. In this study, a selective high-performance analytical method based on capillary zone electrophoresis (CZE) to investigate interactions between heparin and CKLF1-C27/CKLF1-C19 was developed. Samples containing CKLF1-C27/CKLF1-C19 and heparin at various ratios were incubated at room temperature and then separated by CZE with Tris-acetate buffer at pH 7.2. Both qualitative and quantitative characterizations of the binding were determined. The binding constants of the interactions between CKLF1-C27/CKLF1-C19 and heparin were calculated as (3.38 +/- 0.49) x 10(5) M(-1) and (1.10 +/- 0.02) x 10(5) M(-1) by Scatchard analysis. To study structural requirements, CKLF1-C19pm and CKLF1-C19km have been synthesized, and their interactions with heparin have been studied by CZE. We found that the Pro or Lys to Ala substitution within the residues of CKLF1-C19 (CKLF1-C19pm or CKLF1-C19km) strongly decreased or abolished its interaction with heparin, suggesting that the residues of Pro affect the affinity of CKLF1-C19 for heparin, and the residues of Lys of CKLF1-C19 play the important role for the interaction of CKLF1-C19 and heparin, respectively. The methodology presented should be generally applicable to study peptides and heparin interactions quantitatively and qualitatively.
趋化因子样因子1(CKLF1)是一种新型人类细胞因子,对白细胞具有趋化活性。从分泌的CKLF1中获得了两种名为CKLF1-C27和CKLF1-C19的肽。在本研究中,开发了一种基于毛细管区带电泳(CZE)的选择性高效分析方法,用于研究肝素与CKLF1-C27/CKLF1-C19之间的相互作用。将含有不同比例CKLF1-C27/CKLF1-C19和肝素的样品在室温下孵育,然后用pH 7.2的Tris-乙酸缓冲液通过CZE进行分离。对结合进行了定性和定量表征。通过Scatchard分析计算出CKLF1-C27/CKLF1-C19与肝素之间相互作用的结合常数分别为(3.38±0.49)×10⁵ M⁻¹和(1.10±0.02)×10⁵ M⁻¹。为了研究结构要求,合成了CKLF1-C19pm和CKLF1-C19km,并通过CZE研究了它们与肝素的相互作用。我们发现,CKLF1-C19残基内的脯氨酸或赖氨酸被丙氨酸取代(CKLF1-C19pm或CKLF1-C19km)会强烈降低或消除其与肝素的相互作用,这表明脯氨酸残基影响CKLF1-C19对肝素的亲和力,而CKLF1-C19的赖氨酸残基分别在CKLF1-C19与肝素的相互作用中起重要作用。所提出的方法通常应适用于定量和定性研究肽与肝素的相互作用。