硼替佐米
套细胞淋巴瘤
蛋白酶体抑制剂
蛋白酶体
细胞培养
热休克蛋白
生物
分子生物学
免疫印迹
细胞
细胞生物学
基因
淋巴瘤
生物化学
遗传学
免疫学
多发性骨髓瘤
作者
Marc Weinkauf,Yvonne Zimmermann,Elena Hartmann,Andreas Rosenwald,Malte Rieken,Alessandro Pastore,Grit Hutter,Wolfgang Hiddemann,Martin Dreyling
标识
DOI:10.1002/elps.200800508
摘要
Although gene expression following bortezomib treatment has been previously explored, direct effects of bortezomib-induced proteasome inhibition on protein level has not been analyzed so far. Using 2-D PAGE in five mantle cell lymphoma cell lines, we screened for cellular protein level alterations following treatment with 25 nM bortezomib for up to 4 h. Using MS, we identified 38 of the 41 most prominent reliably detected protein spots. Twenty-one were affected in all cell lines, whereas the remaining 20 protein spots were exclusively altered in sensitive cell lines. Western blot analysis was performed for 17 of the 38 identified proteins and 70.6% of the observed protein level alterations in 2-D gels was verified. All cell lines exhibited alterations of the cellular protein levels of heat shock-induced protein species (HSPA9, HSP7C, HSPA5, HSPD1), whereas sensitive cell lines also displayed altered cellular protein levels of energy metabolism (ATP5B, AK5, TPI1, ENO-1, ALDOC, GAPDH), RNA and transcriptional regulation (HNRPL, SFRS12) and cell division (NEBL, ACTB, SMC1A, C20orf23) as well as tumor suppressor genes (ENO-1, FH). These proteins clustered in a tight interaction network centered on the major cellular checkpoints TP53. The results were confirmed in primary mantle cell lymphoma, thus confirming the critical role of these candidate proteins of proteasome inhibition.
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