Takahashi Katsuyuki, Tanaka Masako, Yashiro Masakazu, Matsumoto Masaki, Ohtsuka Asuka, Nakayama Keiichi I, Izumi Yasukatsu, Nagayama Katsuya, Miura Katsuyuki, Iwao Hiroshi, Shiota Masayuki
Department of Pharmacology, Osaka City University Medical School, Osaka, Japan; Department of Pharmacy, Osaka City University Hospital, Osaka, Japan.
Applied Pharmacology and Therapeutics, Osaka City University Medical School, Osaka, Japan.
Cancer Lett. 2016 Aug 1;378(1):8-15. doi: 10.1016/j.canlet.2016.05.002. Epub 2016 May 6.
Heat shock protein 72 (Hsp72) is a molecular chaperone that assists in the folding of nascent polypeptides and in the refolding of denatured proteins. In many cancers, Hsp72 is constitutively expressed at elevated levels, which can result in enhanced stress tolerance. Similarly, following treatment with anticancer drugs, Hsp72 binds to denatured proteins that may be essential for survival. We therefore hypothesized that Hsp72 client proteins may play a crucial role in drug resistance. Here, we aimed to identify proteins that are critical for oxaliplatin (OXA) resistance by analyzing human gastric cancer cell lines, as well as OXA-resistant cells via a mass spectrometry-based proteomic approach combined with affinity purification using anti-Hsp72 antibodies. Stromal cell-derived factor 2 (SDF-2) was identified as an Hsp72 client protein unique to OCUM-2M/OXA cells. SDF-2 was overexpressed in OXA-resistant cells and SDF-2 silencing promoted the apoptotic effects of OXA. Furthermore, Hsp72 prevented SDF-2 degradation in a chaperone activity-dependent manner. Together, our data demonstrate that Hsp72 protected SDF-2 to avoid OXA-induced cell death. We propose that inhibition of SDF-2 may comprise a novel therapeutic strategy to counteract OXA-resistant cancers.
热休克蛋白72(Hsp72)是一种分子伴侣,可协助新生多肽折叠以及变性蛋白重新折叠。在许多癌症中,Hsp72持续性高表达,这可能导致应激耐受性增强。同样,在用抗癌药物治疗后,Hsp72会与对生存可能至关重要的变性蛋白结合。因此,我们推测Hsp72的客户蛋白可能在耐药性中起关键作用。在此,我们旨在通过基于质谱的蛋白质组学方法结合使用抗Hsp72抗体的亲和纯化,分析人胃癌细胞系以及耐奥沙利铂(OXA)细胞,从而鉴定对奥沙利铂耐药至关重要的蛋白质。基质细胞衍生因子2(SDF-2)被鉴定为OCUM-2M/OXA细胞特有的Hsp72客户蛋白。SDF-2在耐OXA细胞中过表达,SDF-2沉默可促进OXA的凋亡作用。此外,Hsp72以分子伴侣活性依赖的方式阻止SDF-2降解。总之,我们的数据表明Hsp72保护SDF-2以避免OXA诱导的细胞死亡。我们提出抑制SDF-2可能构成一种对抗耐OXA癌症的新治疗策略。