暴露于香烟烟雾后大鼠肺中抗氧化基因的表达。

Antioxidant gene expression in rat lung after exposure to cigarette smoke.

作者信息

Gilks C B, Price K, Wright J L, Churg A

机构信息

Department of Pathology and Laboratory Medicine, University of British Columbia, Vancouver, Canada.

出版信息

Am J Pathol. 1998 Jan;152(1):269-78.

DOI:
PMID:9422544
Abstract

To investigate the effects of cigarette smoke on the expression of genes encoding intracellular antioxidant species, we exposed rats to whole cigarette smoke or air (control) daily for 1, 2, 7, or 14 days. After sacrifice, RNA was extracted from one lung and expression of mRNA for catalase (CAT), manganese superoxide dismutase (MnSOD), copper-zinc superoxide dismutase (CuZnSOD), glutathione peroxidase (GPX), and metallothionein (MT) was determined by Northern blots and dot blots. The anatomical distribution of expression of these genes was determined by in situ hybridization studies on sections of the contralateral lung. We found that expression of both MnSOD and MT was significantly increased (to levels 70 to 400% greater than in controls) at days 1 and 2 and returned to control levels by day 7. GPX expression was slightly but significantly increased at days 7 and 14 in smoke-exposed animals. CuZnSOD and CAT expression did not change from control levels. In control lungs, MnSOD was expressed in all cell types, with the highest expression seen in bronchial epithelial cells; a notable finding was a mosaic pattern of expression in the bronchial epithelium, with contiguous areas of bronchial epithelium composed of cells expressing MnSOD at high levels (hot spots), compared with the adjacent epithelium. In smoke-exposed lungs, the hot spots became less prominent after 1 and 2 days of exposure to smoke, but after 7 and 14 days the distribution of MnSOD expression was similar in control and smoke-exposed animals. CAT, CuZnSOD, GPX, and MT also showed widespread expression in the lung by in situ hybridization; GPX, CuZnSOD and MT were all most highly expressed in bronchial epithelium, whereas CAT expression levels were similar in all cell types. In contrast to MnSOD, expression of CAT, CuZnSOD, GPX, and MT was uniform within the bronchial epithelium, and the distribution of expression was the same in control and smoke-exposed animals at all time points. We conclude that most of these antioxidant enzymes and scavengers show prominent bronchial expression but that MnSOD shows a unique pattern, with intense hot spots in the epithelium of the small airways. This pattern is similar to the phenomenon of clonal heterogeneity described in other tissues but not previously reported in the lung. We conclude that cigarette smoke, like other forms of oxidant attack, transiently increases expression of MnSOD, and up-regulation of MnSOD expression appears to occur particularly in bronchial epithelial cells, which normally express MnSOD at relatively low levels. MT expression is also transiently increased by smoke whereas GPX expression increases after prolonged (7 to 14 days) exposure to cigarette smoke.

摘要

为了研究香烟烟雾对细胞内抗氧化物质编码基因表达的影响,我们将大鼠每日暴露于全香烟烟雾或空气中(对照组),持续1、2、7或14天。处死后,从一侧肺脏提取RNA,通过Northern印迹法和斑点印迹法测定过氧化氢酶(CAT)、锰超氧化物歧化酶(MnSOD)、铜锌超氧化物歧化酶(CuZnSOD)、谷胱甘肽过氧化物酶(GPX)和金属硫蛋白(MT)的mRNA表达。通过对另一侧肺脏切片进行原位杂交研究来确定这些基因表达的解剖学分布。我们发现,MnSOD和MT的表达在第1天和第2天显著增加(比对照组高70%至400%),并在第7天恢复到对照水平。在暴露于烟雾的动物中,GPX表达在第7天和第14天略有但显著增加。CuZnSOD和CAT的表达与对照水平无变化。在对照肺脏中,MnSOD在所有细胞类型中均有表达,在支气管上皮细胞中表达最高;一个显著的发现是支气管上皮中的表达呈镶嵌模式,与相邻上皮相比,支气管上皮的连续区域由高水平表达MnSOD的细胞组成(热点)。在暴露于烟雾的肺脏中,暴露于烟雾1天和2天后热点变得不那么明显,但在7天和14天后,对照动物和暴露于烟雾动物中MnSOD表达的分布相似。通过原位杂交,CAT、CuZnSOD、GPX和MT在肺脏中也显示出广泛表达;GPX、CuZnSOD和MT在支气管上皮中表达最高,而CAT在所有细胞类型中的表达水平相似。与MnSOD不同,CAT、CuZnSOD、GPX和MT在支气管上皮内的表达是均匀的,并且在所有时间点对照动物和暴露于烟雾动物中的表达分布相同。我们得出结论,这些抗氧化酶和清除剂大多在支气管中高表达,但MnSOD表现出独特的模式,在小气道上皮中有强烈的热点。这种模式类似于在其他组织中描述的克隆异质性现象,但此前在肺脏中未报道。我们得出结论,香烟烟雾与其他形式的氧化应激攻击一样,会短暂增加MnSOD 的表达,并且MnSOD表达的上调似乎尤其发生在通常相对低水平表达MnSOD的支气管上皮细胞中。烟雾也会使MT表达短暂增加,而GPX表达在长期(7至14天)暴露于香烟烟雾后增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9233/1858137/cf1c8590c5b2/amjpathol00013-0263-a.jpg

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