Bhave Sanjiv V, Hoffman Paula L, Lassen Natalie, Vasiliou Vasilis, Saba Laura, Deitrich Richard A, Tabakoff Boris
Department of Pharmacology, University of Colorado at Denver and Health Sciences Center, Aurora, Colorado 80045-0511, USA.
Alcohol Clin Exp Res. 2006 Oct;30(10):1659-69. doi: 10.1111/j.1530-0277.2006.00201.x.
Differences in ethanol metabolizing enzymes expressed in brain have been suggested to contribute to the significant differences in ethanol (alcohol) preference between inbred C57BL/6 and DBA/2 mouse strains.
We have utilized 2 different platforms of oligonucleotide microarray technology (CodeLink UniSet I BioArray from G.E. Healthcare and MG U74A v2.0 from Affymetrix) to simultaneously assess expression of alcohol and acetaldehyde metabolizing enzymes in the whole brain of naïve (no exposure to alcohol) C57BL/6 and DBA/2 mice.
There were no significant differences between the 2 strains of mice in gene expression intensity for alcohol dehydrogenases (ADH), catalase, and a number of the cytochrome P450 family of genes, which can be involved in ethanol catabolism. However, significantly higher expression of mRNA for aldehyde dehydrogenase 2 (ALDH2), an isoform mainly responsible for the catabolism of acetaldehyde, was observed in whole brains of DBA/2 mice with both platforms. Aldehyde dehydrogenase 2 protein was also higher in DBA/2 brain. Expression of aldehyde dehydrogenase 1A1 (ALDH1A1) mRNA was found to be higher in brains of DBA/2 mice, when measured with the CodeLink platform, but not when measured with Affymetrix arrays or quantitative reverse transcriptase-real-time polymerase chain reaction (qRT-PCR). The ALDH1A1 protein, however, reflected the results obtained with the CodeLink arrays and was higher in DBA/2 brain, compared with brains of C57BL/6 mice. In contrast, the expression intensity for the aldehyde dehydrogenase 7A1 (ALDH7A1) mRNA and protein was significantly higher in C57BL/6 mice than DBA/2 mice. These expression differences are consistent with more rapid metabolism of acetaldehyde in brains of DBA/2 mice.
The use of 2 different microarray platforms provides important cross-validation of many results, and some discrepancies can be resolved with qRT-PCR and immunoblotting. The expression differences that were validated may affect alcohol/aldehyde metabolism in brain and/or alcohol preference in the 2 strains of mice.
有研究表明,大脑中乙醇代谢酶表达的差异导致了近交系C57BL/6和DBA/2小鼠品系在乙醇(酒精)偏好上的显著差异。
我们利用两种不同的寡核苷酸微阵列技术平台(通用电气医疗集团的CodeLink UniSet I生物芯片和Affymetrix公司的MG U74A v2.0芯片),同时评估未接触过酒精的C57BL/6和DBA/2小鼠全脑中酒精和乙醛代谢酶的表达情况。
在参与乙醇分解代谢的乙醇脱氢酶(ADH)、过氧化氢酶以及一些细胞色素P450家族基因的基因表达强度方面,这两种小鼠品系之间没有显著差异。然而,在使用两种平台检测时,DBA/2小鼠全脑中主要负责乙醛分解代谢的同工型醛脱氢酶2(ALDH2)的mRNA表达显著更高。DBA/2小鼠脑中的醛脱氢酶2蛋白水平也更高。当使用CodeLink平台检测时,发现DBA/2小鼠脑中醛脱氢酶1A1(ALDH1A1)mRNA的表达较高,但使用Affymetrix芯片或定量逆转录-实时聚合酶链反应(qRT-PCR)检测时并非如此。不过,ALDH1A1蛋白反映了CodeLink芯片检测的结果,与C57BL/6小鼠脑相比,DBA/2小鼠脑中的该蛋白水平更高。相反,醛脱氢酶7A1(ALDH7A1)mRNA和蛋白的表达强度在C57BL/6小鼠中显著高于DBA/2小鼠。这些表达差异与DBA/2小鼠脑中乙醛代谢更快是一致的。
使用两种不同的微阵列平台对许多结果进行了重要的交叉验证,一些差异可以通过qRT-PCR和免疫印迹法来解决。经验证的表达差异可能会影响小鼠脑内酒精/乙醛的代谢和/或这两种小鼠品系的酒精偏好。