PO.EN01.02 · 内分泌肿瘤
致癌性PIK3CA突变增强转基因小鼠中cyclin D1驱动的甲状旁腺肿瘤发生
Oncogenic PIK3CA mutation enhances cyclin D1-driven parathyroid tumorigenesis in transgenic mice
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
甲状旁腺癌是一种罕见但危及生命的恶性肿瘤。对于超过50%在以治愈为目的的手术后复发的甲状旁腺癌患者而言,可用的治疗选择有限。许多此类患者会对药物治疗产生耐药,最终死于甲状旁腺激素分泌性肿瘤所引起的持续性、进行性高钙血症。为寻找可能作为甲状旁腺癌药理干预“可操作靶点”的遗传/分子异常,研究已揭示CDC73抑癌基因频繁失活、cyclin D1癌基因扩增以及PI3K/MTOR通路的激活性突变。我们试图将这些频发的肿瘤驱动突变组合起来,开发一种能够模拟复发/转移性甲状旁腺癌临床病程的新型临床前模型,用于研究疾病进展并最终开发/检验新型预防/治疗干预措施。为此,我们将现有的携带人类甲状旁腺癌中已知发生的遗传学改变的小鼠模型进行杂交,即PTH-cyclinD1转基因小鼠(PCD)、致癌性Pik3ca突变小鼠(Pik3caH1047R)和甲状旁腺特异性Cdc73敲除小鼠。PCD小鼠会以已知的动力学发展出生化性甲状旁腺功能亢进和甲状旁腺肿瘤。携带双重和三重遗传修饰的小鼠被独立评估,并与PCD小鼠及野生型同窝对照进行比较。通过每月采血,随后测定血清钙和甲状旁腺激素(PTH),评估生化性甲状旁腺功能亢进的进展情况。我们观察到,在没有cyclin D1过表达的情况下,Pik3ca的激活不足以驱动甲状旁腺肿瘤发生;而Cdc73的缺失似乎并未在cyclin D1过表达的基础上进一步增强甲状旁腺肿瘤发生。然而,同时携带cyclin D1和Pik3ca激活性突变的杂交小鼠所发展出的生化性原发性甲状旁腺功能亢进比单独激活cyclin D1的小鼠更为严重。部分PCDxPik3caH1047R小鼠出现了与侵袭性甲状旁腺肿瘤相符的非典型组织学特征。因此,Pik3ca激活与cyclin D1过表达的组合似乎产生了更具侵袭性的甲状旁腺肿瘤表型。我们的发现具有重要的潜在治疗意义:cdk4/6抑制剂与PI3K/MTOR抑制剂的联合应用正在其他肿瘤类型中积极研究,此类联合疗法的疗效值得在可能同时携带cyclin D1扩增和PI3K/MTOR激活性突变的甲状旁腺癌中加以研究。
查看英文原文 English abstract
Parathyroid carcinoma is a rare but life-threatening malignancy. Limited treatment options are available for the more than 50% of parathyroid carcinoma patients who develop recurrent disease following surgery with curative intent. Many such patients will become refractory to medical management, eventually succumbing to the sustained, progressive hypercalcemia caused by parathyroid hormone-secreting tumors. Identification of genetic/molecular aberrations that might serve as “actionable targets” for pharmacologic intervention in parathyroid carcinoma have uncovered frequent inactivation of the CDC73 tumor suppressor gene, amplification of the cyclin D1 oncogene and activating mutations of the PI3K/MTOR pathway. We sought to combine these frequent tumor driving mutations to develop a novel preclinical model that could mimic the clinical course of recurrent/metastatic parathyroid carcinoma, for study of disease progression and to eventually develop/test novel preventative/therapeutic interventions. To this end, we crossed existing mouse models with genetic alterations known to occur in human parathyroid carcinomas, namely PTH-cyclinD1 transgenic mice (PCD), oncogenic Pik3ca mutant mice (Pik3caH1047R) and parathyroid-specific Cdc73 knockout mice. PCD mice develop biochemical hyperparathyroidism and parathyroid tumors with known kinetics. Mice harboring double and triple genetic modifications were evaluated independently and compared to PCD and wild type littermate controls. Assessment of progression of biochemical hyperparathyroidism was evaluated by monthly blood collection followed by measurement of serum calcium and parathyroid hormone (PTH). We observed that activation of Pik3ca in the absence of cyclin D1 overexpression was insufficient to drive parathyroid tumorigenesis and that loss of Cdc73 did not appear to enhance parathyroid tumorigenesis beyond the contribution of cyclin D1 overexpression. However, crossed mice harboring activating mutations of both cyclin D1 and Pik3ca developed more severe biochemical primary hyperparathyroidism than those with activated cyclin D1 alone. Some PCDxPik3caH1047R mice developed atypical histologic features consistent with aggressive parathyroid tumors. Thus, the combination of activated Pik3ca and cyclin D1 overexpression appears to yield a more aggressive parathyroid tumor phenotype. Our findings carry important potential therapeutic implications: the combination of cdk4/6 inhibitors with PI3K/MTOR inhibitors is under active investigation in other tumor types and the efficacy of such combination therapy merits investigation in parathyroid carcinomas which may harbor both cyclin D1 amplifications and activating mutations in PI3K/MTOR.
利益披露 Disclosure
M. Jakubowski, None..
C. Burke, None..
J. Bellizzi, None..
A. Arnold, None.