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Specific long non-coding RNAs response to occupational PAHs exposure in coke oven workers

机译:特定的长非编码RNA对焦炉工人职业PAHs暴露的响应

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To explore whether the alteration of lncRNA expression is correlated with polycyclic aromatic hydrocarbons (PAHs) exposure and DNA damage, we examined PAHs external and internal exposure, DNA damage and lncRNAs (HOTAIR, MALAT1, TUG1 and GAS5) expression in peripheral blood lymphocytes (PBLCs) of 150 male coke oven workers and 60 non-PAHs exposure workers. We found the expression of HOTAIR, MALAT1, and TUG1 were enhanced in PBLCs of coke oven workers and positively correlated with the levels of external PAHs exposure (adjusted P"t"r"e"n"d<0.001 for HOTAIR and MALAT1, adjusted P"t"r"e"n"d=0.006 for TUG1). However, only HOTAIR and MALAT1 were significantly associated with the level of internal PAHs exposure (urinary 1-hydroxypyrene) with adjusted @b=0.298, P=0.024 for HOTAIR and @b=0.090, P=0.034 for MALAT1. In addition, the degree of DNA damage was positively associated with MALAT1 and HOTAIR expression in PBLCs of all subjects (adjusted @b=0.024, P=0.002 for HOTAIR and @b=0.007, P=0.003 for MALAT1). Moreover, we revealed that the global histone 3 lysine 27 trimethylation (H3K27me3) modification was positively associated with the degree of genetic damage (@b=0.061, P<0.001) and the increase of HOTAIR expression (@b=0.385, P=0.018). Taken together, our findings suggest that altered HOTAIR and MALAT1 expression might be involved in response to PAHs-induced DNA damage.
机译:为了探讨lncRNA表达的变化是否与多环芳烃(PAHs)暴露和DNA损伤相关,我们检查了PAHs的内部和外部暴露,DNA损伤和外周血淋巴细胞(PBLC)中的lncRNA(HOTAIR,MALAT1,TUG1和GAS5)表达),其中包括150名男性焦炉工人和60名非PAHs暴露工人。我们发现HOTAIR,MALAT1和TUG1的表达在炼焦炉工人的PBLC中得到增强,并且与外部PAHs暴露水平呈正相关(HOTAIR和MALAT1的调整后的P“ t” r“ e” n“ d <0.001,调整后对于TUG1,P“ t” r“ e” n“ d = 0.006)。但是,只有HOTAIR和MALAT1与内部PAHs暴露水平(尿1-羟基py)显着相关,调整后的@ b = 0.298,HOTAIR为P = 0.024和@ b = 0.090,MALAT1为P = 0.034。此外,DNA损伤的程度与所有受试者的PBLC中MALAT1和HOTAIR的表达呈正相关(HOTAIR的@ b = 0.024,P = 0.002,MALAT1的@ b = 0.007,P = 0.003)。此外,我们发现全球组蛋白3赖氨酸27三甲基化(H3K27me3)修饰与遗传损伤的程度(@ b = 0.061,P <0.001)和HOTAIR表达的增加(@ b = 0.385,P = 0.018)正相关。 )。综上所述,我们的发现表明,改变的HOTAIR和MALAT1表达可能参与了对PAHs诱导的DNA损伤的反应。

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