Long K D, Salbaum J M
Neurosciences Institute, San Diego, California 92121, USA.
Mol Biol Evol. 1998 Mar;15(3):284-92. doi: 10.1093/oxfordjournals.molbev.a025925.
Immediate-early genes are part of a cellular response mechanism that reacts to biochemical, electrical, pharmacological, and physiological stimuli as well as changes in behavioral state. In the brain, immediate-early genes-such as egr-1 have been used as markers for neuronal activity. These markers could be invaluable in studies that utilize the chick-quail chimaera system to investigate neural components of behavior. Therefore, we decided to clone avian homologs of immediate-early genes to allow an expression analysis in behavioral paradigms and to determine the degree of conservation among diverse species. We report in this study the cloning of the ZENK gene, an egr-1 homolog, from chicken, quail, zebrafinch, and canary. We show that the coding region of this gene is highly conserved and follows established phylogenetic relationships. In situ hybridization demonstrates that the expression pattern is also conserved among species. We further demonstrate that there are regions in the 3' untranslated area of the ZENK gene that are as highly conserved as the protein-coding region and that may play a role in postranscriptional regulatory mechanisms of ZENK gene expression.
即早基因是细胞反应机制的一部分,该机制对生化、电、药理和生理刺激以及行为状态的变化做出反应。在大脑中,即早基因(如egr-1)已被用作神经元活动的标记物。这些标记物在利用鸡-鹌鹑嵌合体系统研究行为神经成分的研究中可能具有极高的价值。因此,我们决定克隆即早基因的鸟类同源物,以便在行为范式中进行表达分析,并确定不同物种之间的保守程度。我们在本研究中报告了从鸡、鹌鹑、斑马雀和金丝雀中克隆egr-1同源物ZENK基因的情况。我们表明,该基因的编码区高度保守,并遵循既定的系统发育关系。原位杂交表明,该基因的表达模式在物种间也具有保守性。我们进一步证明,ZENK基因3'非翻译区存在一些区域,这些区域与蛋白质编码区一样高度保守,可能在ZENK基因表达的转录后调控机制中发挥作用。