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肝细胞核因子-3(HNF-3或Foxa2)通过与G1和G2启动子元件结合来调节胰高血糖素基因转录。

Hepatic nuclear factor-3 (HNF-3 or Foxa2) regulates glucagon gene transcription by binding to the G1 and G2 promoter elements.

作者信息

Gauthier Benoit R, Schwitzgebel Valerie M, Zaiko Maia, Mamin Aline, Ritz-Laser Beate, Philippe Jacques

机构信息

Unité de Diabétologie Clinique, Centre Médical Universitaire, 1211 Genève 4, Switzerland.

出版信息

Mol Endocrinol. 2002 Jan;16(1):170-83. doi: 10.1210/mend.16.1.0752.

Abstract

Glucagon gene expression in the endocrine pancreas is controlled by three islet-specific elements (G3, G2, and G4) and the alpha-cell-specific element G1. Two proteins interacting with G1 have previously been identified as Pax6 and Cdx2/3. We identify here the third yet uncharacterized complex on G1 as hepatocyte nuclear factor 3 (HNF-3)beta, a member of the HNF-3/forkhead transcription family, which plays an important role in the development of endoderm-related organs. HNF-3 has been previously demonstrated to interact with the G2 element and to be crucial for glucagon gene expression; we thus define a second binding site for this transcription on the glucagon gene promoter. We demonstrate that both HNF-3alpha and -beta produced in heterologous cells can interact with similar affinities to either the G1 or G2 element. Pax6, which binds to an overlapping site on G1, exhibited a greater affinity as compared with HNF-3alpha or -beta. We show that both HNF-3beta and -alpha can transactivate glucagon gene transcription through the G2 and G1 elements. However, HNF-3 via its transactivating domains specifically impaired Pax6-mediated transactivation of the glucagon promoter but had no effect on transactivation by Cdx2/3. We suggest that HNF-3 may play a dual role on glucagon gene transcription by 1) inhibiting the transactivation potential of Pax6 on the G1 and G3 elements and 2) direct activation through G1 and G2.

摘要

内分泌胰腺中胰高血糖素基因的表达受三个胰岛特异性元件(G3、G2和G4)以及α细胞特异性元件G1的控制。先前已鉴定出与G1相互作用的两种蛋白质为Pax6和Cdx2/3。我们在此鉴定出G1上第三个尚未表征的复合物为肝细胞核因子3(HNF-3)β,它是HNF-3/叉头转录家族的成员,在内胚层相关器官的发育中起重要作用。先前已证明HNF-3与G2元件相互作用且对胰高血糖素基因表达至关重要;因此,我们在胰高血糖素基因启动子上定义了该转录因子的第二个结合位点。我们证明,在异源细胞中产生的HNF-3α和-β都能以相似的亲和力与G1或G2元件相互作用。与G1上重叠位点结合的Pax6与HNF-3α或-β相比,表现出更高的亲和力。我们表明,HNF-3β和-α都能通过G2和G1元件反式激活胰高血糖素基因转录。然而,HNF-3通过其反式激活结构域特异性地损害了Pax6介导的胰高血糖素启动子的反式激活,但对Cdx2/3的反式激活没有影响。我们认为,HNF-3可能在胰高血糖素基因转录中发挥双重作用:1)抑制Pax6对G1和G3元件的反式激活潜能;2)通过G1和G2直接激活。

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