Kishimoto Masahiko, Okimura Yasuhiko, Yagita Kazuhiro, Iguchi Genzo, Fumoto Mariko, Iida Keiji, Kaji Hidesuke, Okamura Hitoshi, Chihara Kazuo
Division of Endocrinology/Metabolism, Neurology and Hematology/Oncology, Department of Clinical Molecular Medicine, Kobe University Graduate School of Medicine, Kobe University School of Medicine, 7-10-2, Tomogaoka, Suma-ku, Kobe 654-0142, Japan.
J Biol Chem. 2002 Nov 22;277(47):45141-8. doi: 10.1074/jbc.M202991200. Epub 2002 Aug 27.
Pit-1 stimulates the expression of growth hormone, prolactin, and thyrotropin beta subunit genes. Consequently, abnormality of the Pit-1 gene results in combined pituitary hormone deficiency (CPHD). In this study, we analyzed the function of Pit-1 with a mutation (proline to leucine at codon 24) in the transactivation domain, P24L, which has a normal POU domain important for binding to DNA, because this mutation had been reported in a patient with CPHD. We found that codon 24 proline in the transactivation domain as well as the POU domain of Pit-1 was crucial to recruit coactivator CREB-binding protein (CBP) in the cultured cells. P24L completely lost the responsiveness to cAMP to stimulate the expression of the Pit-1-targeted genes. Furthermore, CBP and Pit-1, but not P24L, markedly enhanced the expression of the Pit-1-targeted gene to cAMP, and adenovirus E1a that binds to CBP and abrogates its function blocked the induction by cAMP of Pit-1-stimulated gene transcription in the pituitary-derived GH3 cells. These results suggest that CBP and proline at codon 24 in the transactivation domain of Pit-1 are important for the cAMP-induced activation of Pit-1-targeted genes. However, P24L maintained basal transcriptional activity, suggesting that CBP is unlikely to be an essential coactivator for Pit-1.
Pit-1刺激生长激素、催乳素和促甲状腺激素β亚基基因的表达。因此,Pit-1基因异常会导致联合垂体激素缺乏症(CPHD)。在本研究中,我们分析了反式激活结构域中发生突变(密码子24处脯氨酸突变为亮氨酸,即P24L)的Pit-1的功能,该突变体具有对DNA结合很重要的正常POU结构域,因为曾有一名CPHD患者报道过这种突变。我们发现,Pit-1反式激活结构域中的密码子24脯氨酸以及POU结构域对于在培养细胞中募集共激活因子CREB结合蛋白(CBP)至关重要。P24L完全丧失了对cAMP刺激Pit-1靶向基因表达的反应能力。此外,CBP和Pit-1能显著增强Pit-1靶向基因对cAMP的表达,而结合CBP并消除其功能的腺病毒E1a阻断了cAMP在垂体来源的GH3细胞中诱导Pit-1刺激的基因转录。这些结果表明,CBP和Pit-1反式激活结构域中密码子24处的脯氨酸对于cAMP诱导的Pit-1靶向基因激活很重要。然而,P24L维持了基础转录活性,这表明CBP不太可能是Pit-1必不可少的共激活因子。