Murphy S K, Wylie A A, Jirtle R L
Department of Radiation Oncology, Duke University Medical Center, Durham, North Carolina 27710, USA.
Genomics. 2001 Jan 1;71(1):110-7. doi: 10.1006/geno.2000.6419.
The paternally expressed Peg3 gene in mice encodes an unusual Krüppel-type zinc finger protein implicated in critical cellular and behavioral functions including growth, apoptosis, and maternal nurturing behavior. Methylation and expression analyses were used to determine whether PEG3 on chromosome 19q13.4 is imprinted in humans. The PEG3 promoter is encompassed within a large CpG-rich region that is differentially methylated in fetal tissues. Furthermore, expression studies demonstrate that PEG3 is ubiquitously imprinted throughout development and postnatally. Multiple isoforms of the PEG3 gene, including a novel transcript, are paternally expressed. These results are the first to show that human chromosome 19q13.4 contains an imprinted region. The imprinted status of PEG3 throughout life coupled with its neural expression and putative roles in regulating cell growth suggests that PEG3 may be a susceptibility locus for cancer as well as neurobehavioral deficits.
小鼠中父系表达的Peg3基因编码一种不同寻常的克鲁ppel型锌指蛋白,该蛋白与包括生长、凋亡和母性养育行为在内的关键细胞和行为功能有关。甲基化和表达分析用于确定19号染色体q13.4上的PEG3在人类中是否为印记基因。PEG3启动子包含在一个富含CpG的大区域内,该区域在胎儿组织中存在差异甲基化。此外,表达研究表明PEG3在整个发育过程和出生后均呈现普遍印记状态。PEG3基因的多种异构体,包括一种新的转录本,均为父系表达。这些结果首次表明人类19号染色体q13.4包含一个印记区域。PEG3一生的印记状态及其在神经中的表达以及在调节细胞生长中的假定作用表明,PEG3可能是癌症以及神经行为缺陷的易感基因座。