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Transcriptional Activity of Heparan Sulfate Biosynthetic Machinery is Specifically Impaired in Benign Prostate Hyperplasia and Prostate Cancer

机译:硫酸乙酰肝素生物合成机械的转录活性在前列腺良性增生和前列腺癌中特别受损

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摘要

Heparan sulfates (HSs) are key components of mammalian cells surface and extracellular matrix. Structure and composition of HS, generated by HS-biosynthetic system through non-template-driven process, are significantly altered in cancer tissues. The aim of this study was to investigate the involvement of HS-metabolic machinery in prostate carcinogenesis. Transcriptional patterns of HS-metabolic enzymes (EXT1, EXT2, NDST1, NDST2, GLCE, 3OST1/HS3ST1, SULF1, SULF2, HPSE) were determined in normal, benign, and cancer human prostate tissues and cell lines (PNT2, LNCaP, PC3, DU145). Stability of the HS-metabolic system patterns under the pressure of external or internal stimuli was studied. Overall impairment of transcriptional activity of HS-metabolic machinery was detected in benign prostate hyperplasia, while both significant decrease in the transcriptional activity and changes in the expression patterns of HS metabolism-involved genes were observed in prostate tumors. Prostate cancer cell lines possessed specific transcriptional patterns of HS metabolism-involved genes; however, expression activity of the system was similar to that of normal prostate PNT2 cells. HS-metabolic system was able to dynamically react to different external or internal stimuli in a cell type-dependent manner. LNCaP cells were sensitive to the external stimuli (5-aza-deoxycytidin or Trichostatin A treatments; co-cultivation with human fibroblasts), whereas PC3 cells almost did not respond to the treatments. Ectopic GLCE over-expression resulted in transcriptional activation of HS-biosynthetic machinery in both cell lines, suggesting an existence of a self-regulating mechanism for the coordinated transcription of HS metabolism-involved genes. Taken together, these findings demonstrate impairment of HS-metabolic system in prostate tumors in vivo but not in prostate cancer cells in vitro, and suggest that as a potential microenvironmental biomarker for prostate cancer diagnostics and treatment.
机译:硫酸乙酰肝素(HSs)是哺乳动物细胞表面和细胞外基质的关键成分。 HS-生物合成系统通过非模板驱动的过程生成的HS的结构和组成在癌症组织中显着改变。这项研究的目的是调查HS代谢机制参与前列腺癌的发生。确定了正常,良性和癌性人类前列腺组织和细胞系(PNT2,LNCaP,PC3,HS3的HS代谢酶(EXT1,EXT2,NDST1,NDST2,GLCE,3OST1 / HS3ST1,SULF1,SULF2,HPSE)的转录模式DU145)。研究了HS-代谢系统模式在外部或内部刺激压力下的稳定性。在良性前列腺增生中检测到HS-代谢机制的转录活性的总体损伤,而在前列腺肿瘤中观察到转录活性的显着降低和HS代谢相关基因的表达模式的改变。前列腺癌细胞系具有HS代谢相关基因的特定转录模式。然而,该系统的表达活性与正常前列腺PNT2细胞相似。 HS-代谢系统能够以细胞类型依赖性的方式对不同的外部或内部刺激做出动态反应。 LNCaP细胞对外部刺激敏感(5-氮杂脱氧胞苷或曲古他汀A处理;与人成纤维细胞共培养),而PC3细胞几乎对处理无反应。异位GLCE的过度表达导致两种细胞系中HS生物合成机制的转录激活,这表明存在与HS代谢相关基因协同转录的自我调节机制。综上所述,这些发现表明体内前列腺肿瘤中HS-代谢系统受损,但体外前列腺癌细胞中则没有,这表明它是用于前列腺癌诊断和治疗的潜在微环境生物标志物。

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