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首页> 外文期刊>International journal of hyperthermia: The official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group >Proteomic and bioinformatic analysis of condyloma acuminata: mild hyperthermia treatment reveals compromised HPV infectivity of keratinocytes via regulation of metabolism, differentiation and anti-viral responses
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Proteomic and bioinformatic analysis of condyloma acuminata: mild hyperthermia treatment reveals compromised HPV infectivity of keratinocytes via regulation of metabolism, differentiation and anti-viral responses

机译:尖锐湿疣的蛋白质组学和生物信息学分析:温和的高温治疗通过调节代谢,分化和抗病毒反应揭示了角质形成细胞的HPV感染力受损

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Hyperthermia has proved successful in treating cutaneous human papillomavirus infectious diseases such as plantar wart and condyloma acuminata (CA). Moreover, this treatment provides improved therapeutic efficacy in these conditions as compared with conventional therapies. To investigate the global proteome changes in CA in response to hyperthermia and achieve a better understanding of the mechanisms of hyperthermia therapy against HPV-infectious diseases. CA tissue was obtained from patients undergoing pathological examinations. Diagnosis was verified as based on results of both HE staining and HPV-DNA PCR assay. Hyperthermia was achieved with a 44?°C water bath. Differentially expressed proteins (DEPs) were identified by iTRAQ labeling, SCX chromatography and LC-MS/MS assay. Validation of proteomic results was performed using real-time qPCR and western blot, while bioinformatic analysis of DEPs was accomplished by R 3.4.1, STRING and Cytoscape softwares. In response to hyperthermia, a total of 102 DEPs were identified with 37 being upregulated and 65 downregulated. Among these DEPs, hyperthermia induced proteins involved with anti-viral processes such as OAS1, MX1, BANF1, CANX and AP1S1, whereas it inhibited proteins that participated in cellular metabolism, such as GALT, H6PD, EXOSC4 and EXOSC6; protein translation, such as RPS4Y1; as well as keratinocyte differentiation, such as KRT5, KRT27, KRT75, KRT76 and H2AFY2. Hyperthermia inhibited enzymes and molecules responsible for metabolism modulation and keratinocyte differentiation in CA tissue, whereas it promoted factors involved in anti-viral responses. Such effects may, in part, contribute to the efficacy of local hyperthermia therapy against HPV infection.
机译:事实证明,高热能成功治疗皮肤人乳头瘤病毒感染性疾病,例如plant疣和尖锐湿疣(CA)。而且,与常规疗法相比,该疗法在这些情况下提供了改善的疗效。为了调查CA对热疗反应的总体蛋白质组变化,并更好地了解针对HPV感染性疾病的热疗治疗机制。 CA组织取自进行病理检查的患者。根据HE染色和HPV-DNA PCR分析的结果验证了诊断。使用44°C水浴即可达到高温。通过iTRAQ标记,SCX色谱和LC-MS / MS分析鉴定了差异表达的蛋白质(DEP)。蛋白质组学结果的验证使用实时qPCR和Western blot进行,DEP的生物信息学分析通过R 3.4.1,STRING和Cytoscape软件完成。响应于高温,共鉴定出102种DEP,其中37种被上调而65种被下调。在这些DEP中,高热诱导的蛋白参与了抗病毒过程,例如OAS1,MX1,BANF1,CANX和AP1S1,而它抑制了参与细胞代谢的蛋白,例如GALT,H6PD,EXOSC4和EXOSC6。蛋白质翻译,例如RPS4Y1;以及角质形成细胞的分化,例如KRT5,KRT27,KRT75,KRT76和H2AFY2。热疗抑制CA组织中负责代谢调节和角质形成细胞分化的酶和分子,而它促进了抗病毒反应中涉及的因子。这种作用可能部分有助于局部高温疗法抵抗HPV感染的功效。

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