Xiao Ping, Tang Aifa, Yu Zhendong, Gui Yaoting, Cai Zhiming
Shenzhen Key Lab of Male Reproduction and Genetics, Peking University Shenzhen Hospital, Shenzhen, PR China.
Biol Pharm Bull. 2008 Feb;31(2):201-6. doi: 10.1248/bpb.31.201.
The aim of this study was to characterize the gene expression profiles of mouse testis at different stages by performing large-scale complementary DNA (cDNA) analysis using DNA microarrays. The transcription profile of mouse testis was determined by comparing testis samples of mice aged 4, 9, 18, 35, 54 d and 6 months using Affymetrix Genechip mouse microarrays (430 v.2). Of the six comparative pairs of two neighboring spots examined, lots of differently expressed genes existed on day 18 versus day 9 and on day 35 versus day 18, indicating these genes may be involved in unique events during those periods. In mining the Genechip data, the gene expression profiles of 2058 genes represented in a gradually increased manner in the developmental stages of mice testis, and its validity was confirmed by the data of 21 known spermatogenesis-related testis-specific genes in our chip and the results of 10 random sample from 2058 genes produced by the sub-quantitative RT-PCR. So, we called these 2058 genes spermatogenesis-related genes. By informatics analysis, the gene expression clustering, gene ontology, KEGG pathway and domain regions were predicted for describing the potential roles that may play during mouse spermatogenesis. This study provides a molecular basis for the identity of spermatogenesis-related gene in mouse testis and leads to the elucidation of the molecular events underlying mammalian male reproduction.
本研究的目的是通过使用DNA微阵列进行大规模互补DNA(cDNA)分析,来表征小鼠睾丸在不同阶段的基因表达谱。使用Affymetrix Genechip小鼠微阵列(430 v.2)比较4日龄、9日龄、18日龄、35日龄、54日龄和6月龄小鼠的睾丸样本,以确定小鼠睾丸的转录谱。在所检测的六对相邻样本的比较中,在18日龄与9日龄以及35日龄与18日龄之间存在许多差异表达基因,表明这些基因可能参与了这些时期的独特事件。在挖掘基因芯片数据时,2058个基因的表达谱在小鼠睾丸发育阶段呈逐渐增加的方式,并且通过我们芯片中21个已知的与精子发生相关的睾丸特异性基因的数据以及从2058个基因中随机选取的10个样本进行半定量逆转录聚合酶链反应(RT-PCR)的结果证实了其有效性。因此,我们将这2058个基因称为精子发生相关基因。通过信息学分析,预测了基因表达聚类、基因本体、KEGG通路和结构域区域,以描述在小鼠精子发生过程中可能发挥的潜在作用。本研究为鉴定小鼠睾丸中精子发生相关基因提供了分子基础,并有助于阐明哺乳动物雄性生殖的分子事件。