首页> 外文期刊>Journal of Biochemistry >Surface plasmon resonance and NMR analyses of anti Tn-antigen MLS128 monoclonal antibody binding to two or three consecutive Tn-antigen clusters
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Surface plasmon resonance and NMR analyses of anti Tn-antigen MLS128 monoclonal antibody binding to two or three consecutive Tn-antigen clusters

机译:抗Tn抗原MLS128单克隆抗体与两个或三个连续的Tn抗原簇结合的表面等离子体共振和NMR分析

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Tn-antigens are tumour-associated carbohydrate antigens that are involved in metastatic processes and are associated with a poor prognosis. MLS128 monoclonal antibody recognizes the structures of two or three consecutive Tn-antigens (Tn2 or Tn3). Since MLS128 treatment inhibits colon and breast cancer cell growth [Morita, N., Yajima, Y., Asanuma, H., Nakada, H., and Fujita-Yamaguchi, Y. (2009) Inhibition of cancer cell growth by anti-Tn monoclonal antibody MLS128. Biosci. Trends 3, 32–37.], understanding the interaction between MLS128 and Tn-clusters may allow us to the development of novel cancer therapeutics. Although MLS128 was previously reported to have specificity for Tn3 rather than Tn2, similar levels of Tn2/Tn3 binding were unexpectedly observed at 37°C. Thus, thermodynamic analyses were performed via surface plasmon resonance (SPR) using synthetic Tn2- and Tn3-peptides at 10, 15, 20, 25 and 30°C. SPR results revealed that MLS128's association constants for both antigens were highly temperature dependent. Below 25°C MLS128's association constant for Tn3-peptide was clearly higher than that for Tn2-peptide. At 30°C, however, the association constant for Tn2-peptide was higher than that for Tn3-peptide. This reversal of affinity is due to the sharp increase in Kd for Tn3. These results were confirmed by NMR, which directly measured MLS128-Tn binding in solution. This study suggested that thermodynamic control plays a critical role in the interaction between MLS128/Tn2 and MLS128/Tn3.
机译:Tn抗原是与肿瘤相关的碳水化合物抗原,与转移过程有关,预后较差。 MLS128单克隆抗体识别两个或三个连续Tn抗原(Tn2或Tn3)的结构。由于MLS128治疗会抑制结肠和乳腺癌细胞的生长[Morita,N.,Yajima,Y.,Asanuma,H.,Nakada,H.和Fujita-Yamaguchi,Y.(2009)通过抗Tn抑制癌细胞的生长单克隆抗体MLS128。生物科学。趋势3,32-37。],了解MLS128和Tn簇之间的相互作用可能使我们能够开发新的癌症疗法。尽管先前报道了MLS128对Tn3而非Tn2具有特异性,但在37°C时出乎意料地观察到了类似水平的Tn2 / Tn3结合。因此,在10、15、20、25和30°C下使用合成的Tn2-和Tn3-肽通过表面等离子体激元共振(SPR)进行了热力学分析。 SPR结果表明,两种抗原的MLS128缔合常数高度依赖温度。低于25°C,Tn3-肽的MLS128缔合常数明显高于Tn2-肽的缔合常数。然而,在30℃下,Tn2-肽的缔合常数高于Tn3-肽的缔合常数。这种亲和力的逆转归因于Tn3的K d 的急剧增加。 NMR证实了这些结果,该NMR直接测量了溶液中MLS128-Tn的结合。这项研究表明,热力学控制在MLS128 / Tn2与MLS128 / Tn3之间的相互作用中起着至关重要的作用。

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