Vanden Heuvel J P, Holden P, Tugwood J, Ingle C, Yen W, Galjart N, Greenlee W F
Department of Veterinary Science and Molecular Toxicology Program, Penn State University, University Park, Pennsylvania 16802, USA.
Toxicol Appl Pharmacol. 1998 Sep;152(1):107-18. doi: 10.1006/taap.1998.8478.
The implementation of a rat hepatocyte model system and differential display-polymerase chain reaction resulted in the isolation of ZFP-37 as a peroxisome proliferator-responsive gene. In addition to being responsive to peroxisome proliferators, rat ZFP-37 (rZFP-37) mRNA accumulates rapidly after treating cells with several other hepatic tumor promoters, serum, and cycloheximide, indicating that this gene belongs to the immediate-early growth responsive gene family. Although rZFP-37 and mouse ZFP-37 (mZFP-37) are both members of the Krüppel-associated box and C2H2 zinc finger superfamily of proteins, there are several features that distinguish the two proteins. The primary protein sequences of rat and mouse ZFP-37 are highly conserved, especially within the region encoding the 12 C2H2 zinc finger motifs; however, a region believed to be involved in DNA binding in mZFP-37 is divergent in rZFP-37. Mouse ZFP-37 mRNA is expressed almost exclusively in testes and brain, whereas rZFP-37 mRNA is expressed in testes, brain, kidney, spleen, thymus, lung, and at low levels in liver. A major difference between regulation of ZFP-37 in the two species exists as rZFP-37 is induced, while mZFP-37 is repressed, in liver by the administration of the potent peroxisome proliferator Wy 14,643. Despite the fact that mZFP-37 is believed to be important in cell growth and differentiation in testes and brain, the pronounced differences in regulation of this gene in two closely related species preclude an extrapolation to rZFP-37's biological role. Nonetheless, the effects of tumor promoters and mitogens on its expression and the inclusion of rZFP-37 into the immediate-early growth gene families raise the possibility that this gene plays a role in hepatocyte proliferation and/or differentiation.
大鼠肝细胞模型系统的实施以及差异显示聚合酶链反应导致ZFP - 37作为过氧化物酶体增殖物反应基因被分离出来。除了对过氧化物酶体增殖物有反应外,在用几种其他肝肿瘤启动子、血清和环己酰亚胺处理细胞后,大鼠ZFP - 37(rZFP - 37)mRNA会迅速积累,这表明该基因属于即刻早期生长反应基因家族。尽管rZFP - 37和小鼠ZFP - 37(mZFP - 37)都是Krüppel相关盒和C2H2锌指蛋白超家族的成员,但有几个特征区分了这两种蛋白质。大鼠和小鼠ZFP - 37的一级蛋白质序列高度保守,特别是在编码12个C2H2锌指基序的区域内;然而,mZFP - 37中一个被认为参与DNA结合的区域在rZFP - 37中是不同的。小鼠ZFP - 37 mRNA几乎只在睾丸和大脑中表达,而rZFP - 37 mRNA在睾丸、大脑、肾脏、脾脏、胸腺、肺中表达,在肝脏中表达水平较低。两种物种中ZFP - 37调节的一个主要差异在于,通过给予强效过氧化物酶体增殖剂Wy 14,643,rZFP - 37在肝脏中被诱导,而mZFP - 37在肝脏中被抑制。尽管mZFP - 37被认为在睾丸和大脑的细胞生长和分化中很重要,但该基因在两个密切相关物种中的调节存在明显差异,这使得无法推断rZFP - 37的生物学作用。尽管如此,肿瘤启动子和有丝分裂原对其表达的影响以及rZFP - 37被纳入即刻早期生长基因家族,增加了该基因在肝细胞增殖和/或分化中起作用的可能性。