Boustead J N, Martin C C, Oeser J K, Svitek C A, Hunter S I, Hutton J C, O'Brien R M
Department of Molecular Physiology and Biophysics, 761 PRB, Vanderbilt University Medical School, Nashville, Tennessee 37232-0615, USA.
J Mol Endocrinol. 2004 Feb;32(1):33-53. doi: 10.1677/jme.0.0320033.
Glucose-6-phosphatase (G6Pase) catalyzes the final step in the gluconeogenic and glycogenolytic pathways, the hydrolysis of glucose-6-phosphate (G6P) to glucose and phosphate. This paper describes the identification and characterization of a cDNA and the gene encoding the mouse ubiquitously expressed G6Pase catalytic subunit-related protein (UGRP). The open reading frame of this UGRP cDNA encodes a protein (346 amino acids (aa); Mr 38,755) that shares 36% overall identity (56% similarity) with the mouse G6Pase catalytic subunit (357 aa; Mr 40,454). UGRP exhibits a similar predicted transmembrane topology and conservation of many of the catalytically important residues with the G6Pase catalytic subunit; however, unlike the G6Pase catalytic subunit, UGRP does not catalyze G6P hydrolysis and does not contain a carboxy-terminal di-lysine endoplasmic reticulum retention signal. UGRP mRNA was detected by RNA blot analysis in every mouse tissue examined with the highest expression in heart, brain, testis and kidney. Database analysis showed that the mouse UGRP gene is composed of six exons, spans approximately 4.2 kbp of genomic DNA and is located on chromosome 11 along with the G6Pase catalytic subunit gene. The UGRP gene transcription start sites were mapped by primer extension analysis, and the activity of the mouse UGRP gene promoter was analyzed using luciferase fusion gene constructs. In contrast to the G6Pase catalytic subunit gene promoter, the UGRP promoter was highly active in all cell lines examined.
葡萄糖-6-磷酸酶(G6Pase)催化糖异生和糖原分解途径的最后一步,即葡萄糖-6-磷酸(G6P)水解为葡萄糖和磷酸。本文描述了一种cDNA以及编码小鼠普遍表达的G6Pase催化亚基相关蛋白(UGRP)的基因的鉴定和特征。该UGRP cDNA的开放阅读框编码一种蛋白质(346个氨基酸(aa);Mr 38,755),与小鼠G6Pase催化亚基(357 aa;Mr 40,454)的总体一致性为36%(相似性为56%)。UGRP与G6Pase催化亚基具有相似的预测跨膜拓扑结构,并且许多催化重要残基保守;然而,与G6Pase催化亚基不同,UGRP不催化G6P水解,也不包含羧基末端双赖氨酸内质网保留信号。通过RNA印迹分析在每个检测的小鼠组织中都检测到了UGRP mRNA,在心脏、大脑、睾丸和肾脏中表达最高。数据库分析表明,小鼠UGRP基因由六个外显子组成,跨越约4.2 kbp的基因组DNA,与G6Pase催化亚基基因一起位于11号染色体上。通过引物延伸分析确定了UGRP基因转录起始位点,并使用荧光素酶融合基因构建体分析了小鼠UGRP基因启动子的活性。与G6Pase催化亚基基因启动子不同,UGRP启动子在所有检测的细胞系中都具有高活性。