Heat Shock Protein 27-Targeted Heptapeptide of the PKCΔ Catalytic V5 Region Sensitizes Tumors With Radio- and Chemoresistance

体内 热休克蛋白27 克隆形成试验 流式细胞术 癌症研究 蛋白激酶C 医学 体外 污渍 分子生物学 热休克蛋白 激酶 热休克蛋白70 免疫学 细胞生物学 生物 生物化学 生物技术 基因
作者
Hae‐June Lee,Eun Ho Kim,Woo Duck Seo,Tae Hyun Choi,Gi Jeong Cheon,Yoon-Jin Lee,Yun‐Sil Lee
出处
期刊:International Journal of Radiation Oncology Biology Physics [Elsevier BV]
卷期号:80 (1): 221-230 被引量:7
标识
DOI:10.1016/j.ijrobp.2010.11.069
摘要

Purpose Previous data suggest that the PKCδ catalytic V5 (PKCδ-V5) heptapeptide (HEPT) (FEQFLDI) binds HSP27 and blocks HSP27-mediated radio- or chemoresistance. Here we investigated further the in vivo function of the PKCδ-V5 HEPT. Methods and Materials Labeling of HEPT with Cy5.5 or fluorescein isothiocyanate was performed to evaluate in vitro or in vivo distribution of HEPT. A clonogenic survival assay, flow cytometry, and Western blotting of cleaved caspase-3 were performed to determine in vitro sensitization effects of HEPT plus ionizing radiation (IR) versus IR alone or those of HEPT plus cisplatin(Cis) versus Cis alone. A nude mouse xenografting system was also applied to detect in vivo sensitizing effects of HEPT. Results HEPT efficiently bound to HSP27 and showed sensitization after combined treatment with IR versus treatment with Cis alone in NCI-H1299 lung carcinoma cells, with higher HSP27 expression, which was similar to that of combined treatment with IR or with Cis alone in NCI-H460 lung carcinoma cells with lower HSP27 expression. In vivo image analysis using Cy5.5-labeled HEPT showed that HEPT was retained in HSP27-overexpressing cancer cells after xenografting to nude mice. Combined treatment of HEPT with IR versus that with Cis alone in xenografted mice showed that HEPT increased radio- or chemosensitization in NCI-H1299 cells compared to that in mice xenografted with NCI-H460 cells. Conclusions The novel PKCδ-V5 HEPT may help overcome HSP27-mediated radio- or chemoresistance. Previous data suggest that the PKCδ catalytic V5 (PKCδ-V5) heptapeptide (HEPT) (FEQFLDI) binds HSP27 and blocks HSP27-mediated radio- or chemoresistance. Here we investigated further the in vivo function of the PKCδ-V5 HEPT. Labeling of HEPT with Cy5.5 or fluorescein isothiocyanate was performed to evaluate in vitro or in vivo distribution of HEPT. A clonogenic survival assay, flow cytometry, and Western blotting of cleaved caspase-3 were performed to determine in vitro sensitization effects of HEPT plus ionizing radiation (IR) versus IR alone or those of HEPT plus cisplatin(Cis) versus Cis alone. A nude mouse xenografting system was also applied to detect in vivo sensitizing effects of HEPT. HEPT efficiently bound to HSP27 and showed sensitization after combined treatment with IR versus treatment with Cis alone in NCI-H1299 lung carcinoma cells, with higher HSP27 expression, which was similar to that of combined treatment with IR or with Cis alone in NCI-H460 lung carcinoma cells with lower HSP27 expression. In vivo image analysis using Cy5.5-labeled HEPT showed that HEPT was retained in HSP27-overexpressing cancer cells after xenografting to nude mice. Combined treatment of HEPT with IR versus that with Cis alone in xenografted mice showed that HEPT increased radio- or chemosensitization in NCI-H1299 cells compared to that in mice xenografted with NCI-H460 cells. The novel PKCδ-V5 HEPT may help overcome HSP27-mediated radio- or chemoresistance.
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