首页> 外文期刊>Cell death & disease. >SBF-1 exerts strong anticervical cancer effect through inducing endoplasmic reticulum stress-associated cell death via targeting sarco/endoplasmic reticulum Ca2+-ATPase 2
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SBF-1 exerts strong anticervical cancer effect through inducing endoplasmic reticulum stress-associated cell death via targeting sarco/endoplasmic reticulum Ca2+-ATPase 2

机译:通过靶向Sarco /内质网Ca 2 + -ATPase 2,通过诱导内质网应激相关细胞死亡,SBF-1通过诱导内质网应激相关的细胞死亡施加强烈的抗静电癌症效应

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Cervical cancer is one of the most common carcinomas in the genital system. In the present study, we report that SBF-1, a synthetic steroidal glycoside, has a strong antigrowth activity against human cervical cancer cells in vitro and in vivo . SBF-1 suppressed the growth, migration and colony formation of HeLa cells. In addition, severe endoplasmic reticulum (ER) stress was triggered by SBF-1, and 4-phenyl-butyric acid, a chemical chaperone, partially reversed SBF-1-induced cell death. To uncover the target protein of SBF-1, the compound was labeled with biotin. The biotin-labeled SBF-1 bound to sarco/ER Ca2+-ATPase 2 (SERCA2) and colocalized with SERCA2 in HeLa cells. Moreover, SBF-1 inhibited SERCA activity, depleted ER Ca2+ and increased cytosolic Ca2+ levels. 1,2-Bis( o -aminophenoxy)ethane- N , N , N ′, N ′-tetraacetic acid, a chelator of Ca2+, partially blocked SBF-1-induced ER stress and growth inhibition. Importantly, knockdown of SERCA2 increased the sensitivity of HeLa cells to SBF-1-induced ER stress and cell death, whereas overexpression of SERCA2 decreased this sensitivity. Furthermore, SBF-1 induced growth suppression and apoptosis in HeLa xenografts, which is closely related to the induction of ER stress and inhibition of SERCA activity. Finally, SERCA2 expression was elevated in human cervical cancer tissues ( n =299) and lymph node metastasis ( n =8), as compared with normal cervix tissues ( n =23), with a positive correlation with clinical stages. In all, these results suggest that SBF-1 disrupts Ca2+ homeostasis and causes ER stress-associated cell death through directly binding to SERCA2 and inhibiting SERCA activity. Our findings also indicate that SERCA2 is a potential therapeutic target for human cervical cancer.
机译:宫颈癌是生殖器系统中最常见的癌之一。在本研究中,我们报告称SBF-1是一种合成甾体苷糖苷,在体外和体内对人宫颈癌细胞具有强烈的抗真菌活性。 SBF-1抑制了HeLa细胞的生长,迁移和菌落形成。此外,通过SBF-1和4-苯基 - 丁酸,化学伴侣,部分反转的SBF-1诱导的细胞死亡引发严重的内质网(ER)应力。为了揭示SBF-1的靶蛋白,将该化合物用生物素标记。将生物素标记的SBF-1与Sarco / ER Ca 2 + -AtPase 2(Serca2)结合,并在HeLa细胞中用Serca2分致大化。此外,SBF-1抑制SERCA活性,耗尽ER Ca 2 + / sup>和增加的细胞溶胶Ca 2 + 水平。 1,2-双(O-聚氨酯氧基)乙烷-N,N,N',N' - 乙酸,Ca 2 + 的螯合剂,部分封闭的SBF-1诱导的ER应力和生长抑制。重要的是,Serca2的敲低增加了HeLa细胞对SBF-1诱导的ER应激和细胞死亡的敏感性,而Serca2的过表达降低了这种敏感性。此外,SBF-1诱导Hela异种移植物的生长抑制和细胞凋亡,与ER应激诱导和Serca活性的诱导密切相关。最后,与正常子宫颈组织(n = 23)相比,淋巴结转移(n = 23)相比,淋巴结转移(n = 8)升高,与临床阶段正相关。总而言之,这些结果表明SBF-1破坏了Ca 2 + / sup>稳态,并通过直接与Serca2直接结合并抑制Serca活性来引起ER应激相关的细胞死亡。我们的研究结果还表明Serca2是人宫颈癌的潜在治疗靶标。

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