首页> 外文期刊>Hormone and Metabolic Research >Role of Phosphodiesterases on the Function of Aryl Hydrocarbon Receptor-Interacting Protein (AIP) in the Pituitary Gland and on the Evaluation of AIP Gene Variants
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Role of Phosphodiesterases on the Function of Aryl Hydrocarbon Receptor-Interacting Protein (AIP) in the Pituitary Gland and on the Evaluation of AIP Gene Variants

机译:磷酸二酯酶对垂体腺体中芳基烃受体 - 相互作用蛋白(AIP)的作用及对AIP基因变体评价的作用

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摘要

Familial isolated pituitary adenoma (FIPA) is caused in about 20 % of cases by loss-of-function germline mutations in the AIP gene. Patients harboring AIP mutations usually present with somatotropinomas-resulting either in gigantism or young-onset acromegaly. AIP encodes for a co-chaperone protein endowed with tumor suppressor properties in somatotroph cells. Among other mechanisms proposed to explain this function, a regulatory effect over the 3', 5'-cyclic adenosine monophosphate (cAMP) signaling pathway seems to play a prominent role. In this setting, the well-known interaction between AIP and 2 different isoforms of phosphodiesterases (PDEs), PDE2A3 and PDE4A5, is of particular interest. While the interaction with over-expressed AIP does not seem to affect PDE2A3 function, the reported effect on PDE4A5 is, in contrast, reduced enzymatic activity. In this review, we explore the possible implications of these molecular interactions for the function of somatotroph cells. In particular, we discuss how both PDEs and AIP could act as negative regulators of the cAMP pathway in the pituitary, probably both by shared and independent mechanisms. Moreover, we describe how the evaluation of the AIP-PDE4A5 interaction has proven to be a useful tool for testing AIP mutations, complementing other in silico, in vitro, and in vivo analyses. Improved assessment of the pathogenicity of AIP mutations is indeed paramount to provide adequate guidance for genetic counseling and clinical screening in AIP mutation carriers, which can lead to prospective diagnosis of pituitary adenomas.
机译:家族性孤立的垂体腺瘤(FIPA)是在AIP基因中通过函数丧失的种系突变造成的约20%的病例引起。患有患者的患者通常存在于生长激素中的患者 - 导致胶质瘤或幼小发病症状。 AIP编码用于赋予肿瘤抑制剂在体细胞中的肿瘤抑制性质的蛋白质。在其他机制中,提出解释这一功能,对3',5'-环状腺苷一磷酸盐(CAMP)信号通路似乎发挥着突出作用的调节作用。在该设置中,AIP和2种不同同种型磷酸二酯酶(PDE),PDE2A3和PDE4A5之间的众所周知的相互作用特别感兴趣。虽然与过表达的AIP的相互作用似乎没有影响PDE2A3功能,但是对PDE4A5的报告效果相比,酶活性降低了酶活性。在本次综述中,我们探讨了这些分子相互作用对躯体细胞功能的可能影响。特别是,我们讨论PDE和AIP如何充当垂体中营地途径的负调节器,可能都是通过共享和独立的机制。此外,我们描述了AIP-PDE4A5相互作用的评估如何被证明是测试AIP突变的有用工具,其在硅,体外和体内分析中互补。改进的AIP突变致病性评估确实至关重要为AIP突变载体中的遗传咨询和临床筛查提供足够的指导,这可能导致对垂体腺瘤的前瞻性诊断。

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