Streeper R S, Svitek C A, Chapman S, Greenbaum L E, Taub R, O'Brien R M
Department of Molecular Physiology and Biophysics, Vanderbilt University Medical School, Nashville, Tennessee 37232, USA.
J Biol Chem. 1997 May 2;272(18):11698-701. doi: 10.1074/jbc.272.18.11698.
Glucose-6-phosphatase (G6Pase) catalyzes the final step in the gluconeogenic and glycogenolytic pathways. The transcription of the gene encoding the catalytic subunit of G6Pase is stimulated by glucocorticoids, whereas insulin strongly inhibits both basal G6Pase gene transcription and the stimulatory effect of glucocorticoids. To identify the insulin response sequence (IRS) in the G6Pase promoter through which insulin mediates its action, we have analyzed the effect of insulin on the basal expression of mouse G6Pase-chloramphenicol acetyltransferase (CAT) fusion genes transiently expressed in hepatoma cells. Deletion of the G6Pase promoter sequence between -271 and -199 partially reduces the inhibitory effect of insulin, whereas deletion of additional sequence between -198 and -159 completely abolishes the insulin response. The presence of this multicomponent IRS may explain why insulin potently inhibits basal G6Pase-CAT expression. The G6Pase promoter region between -198 and -159 contains an IRS, since it can confer an inhibitory effect of insulin on the expression of a heterologous fusion gene. This region contains three copies of the T(G/A)TTTTG sequence, which is the core motif of the phosphoenolpyruvate carboxykinase (PEPCK) gene IRS. This suggests that a coordinate increase in both G6Pase and PEPCK gene transcription is likely to contribute to the increased hepatic glucose production characteristic of patients with non-insulin-dependent diabetes mellitus.
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。编码G6Pase催化亚基的基因转录受糖皮质激素刺激,而胰岛素强烈抑制G6Pase基因的基础转录以及糖皮质激素的刺激作用。为了鉴定G6Pase启动子中胰岛素介导其作用的胰岛素反应序列(IRS),我们分析了胰岛素对在肝癌细胞中瞬时表达的小鼠G6Pase-氯霉素乙酰转移酶(CAT)融合基因基础表达的影响。缺失-271至-199之间的G6Pase启动子序列可部分降低胰岛素的抑制作用,而缺失-198至-159之间的额外序列则完全消除胰岛素反应。这种多组分IRS的存在可能解释了胰岛素为何能有效抑制基础G6Pase-CAT表达。-198至-159之间