Recurrent Tuberous Sclerosis Complex/Mammalian Target of Rapamycin Mutations Define Primary Renal Hemangioblastoma as a Unique Entity Distinct From Its Central Nervous System Counterpart.

IF 4.5 1区 医学 Q1 PATHOLOGY American Journal of Surgical Pathology Pub Date : 2024-07-01 Epub Date: 2024-03-19 DOI:10.1097/PAS.0000000000002211
Xiao-Tong Wang, Ru Fang, Hui-Ying He, Wei Zhang, Qing Li, Su-An Sun, Xuan Wang, Ru-Song Zhang, Xiao-Dong Teng, Xiao-Jun Zhou, Qiu-Yuan Xia, Ming Zhao, Qiu Rao
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Abstract

Abstract: Renal hemangioblastoma (HB) is a rare subset of HBs arising outside of the central nervous system (CNS), with its molecular drivers remaining entirely unknown. There were no significant alterations detected in previous studies, including von Hippel-Lindau gene alterations, which are commonly associated with CNS-HB. This study aimed to determine the real molecular identity of renal HB and better understand its relationship with CNS-HB. A cohort of 10 renal HBs was submitted for next-generation sequencing technology. As a control, 5 classic CNS-HBs were similarly analyzed. Based on the molecular results, glycoprotein nonmetastatic B (GPNMB) immunohistochemistry was further performed in the cases of renal HB and CNS-HB. Mutational analysis demonstrated that all 10 renal HBs harbored somatic mutations in tuberous sclerosis complex 1 ( TSC1 , 5 cases), TSC2 (3 cases), and mammalian target of rapamycin (2 cases), with the majority classified as pathogenic or likely pathogenic. The CNS-HB cohort uniformly demonstrated somatic mutations in the von Hippel-Lindau gene. GPNMB was strong and diffuse in all 10 renal HBs and completely negative in CNS-HBs, reinforcing the molecular findings. Our study reveals a specific molecular hallmark in renal HB, characterized by recurrent TSC/mammalian target of rapamycin mutations, which defines it as a unique entity distinct from CNS-HB. This molecular finding potentially expands the therapeutic options for patients with renal HB. GPNMB can be considered for inclusion in immunohistochemical panels to improve renal HB identification.

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复发性结节性硬化综合征/哺乳动物雷帕霉素靶点突变将原发性肾血管母细胞瘤定义为一种独特的实体,与其中枢神经系统对应物截然不同。
摘要:肾血管母细胞瘤(HB)是发生在中枢神经系统(CNS)以外的罕见HB亚群,其分子驱动因素仍完全未知。以往的研究没有发现与中枢神经系统-肾血管瘤相关的重要基因改变,包括冯-希佩尔-林道基因改变。本研究旨在确定肾性 HB 的真正分子特征,并更好地了解其与中枢神经系统 HB 的关系。研究人员将 10 例肾性 HB 进行了新一代测序。作为对照,对 5 例典型的 CNS-HB 进行了类似分析。根据分子检测结果,对肾性 HB 和 CNS-HB 病例进一步进行了糖蛋白非转移 B(GPNMB)免疫组化。突变分析表明,所有10例肾性HB均携带结节性硬化症复合体1(TSC1,5例)、TSC2(3例)和哺乳动物雷帕霉素靶标(2例)的体细胞突变,其中大多数被归类为致病性或可能致病性。中枢神经系统-乙型肝炎队列中的患者一致表现为 von Hippel-Lindau 基因的体细胞突变。在所有 10 例肾型 HB 中,GPNMB 均呈强弥漫性,而在中枢神经系统-HB 中则完全阴性,这进一步证实了分子研究结果。我们的研究揭示了肾性 HB 的特殊分子特征,其特点是复发性 TSC/哺乳动物雷帕霉素靶基因突变,这将其定义为不同于 CNS-HB 的独特实体。这一分子发现可能会扩大肾性 HB 患者的治疗选择范围。可考虑将 GPNMB 纳入免疫组化样本,以提高肾性 HB 的鉴别能力。
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来源期刊
CiteScore
10.30
自引率
5.40%
发文量
295
审稿时长
1 months
期刊介绍: The American Journal of Surgical Pathology has achieved worldwide recognition for its outstanding coverage of the state of the art in human surgical pathology. In each monthly issue, experts present original articles, review articles, detailed case reports, and special features, enhanced by superb illustrations. Coverage encompasses technical methods, diagnostic aids, and frozen-section diagnosis, in addition to detailed pathologic studies of a wide range of disease entities. Official Journal of The Arthur Purdy Stout Society of Surgical Pathologists and The Gastrointestinal Pathology Society.
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