GermlineNF1Mutational Spectra and Loss-of-Heterozygosity Analyses in Patients with Pheochromocytoma and Neurofibromatosis Type 1

嗜铬细胞瘤 杂合子丢失 神经纤维瘤病 神经纤维蛋白1 种系突变 生殖系 等位基因 生物 遗传学 基因型 癌症研究 突变 内科学 医学 内分泌学 基因
作者
Birke Bausch,Wiktor Borozdin,Victor F. Mautner,Michael M. Hoffmann,Detlef Boehm,Mercedes Robledo,Alberto Cascón,Tomas Harenberg,Francesca Schiavi,Christian Pawlu,Mariola Pęczkowska,Claudio Letizia,Stefano Calvieri,Giorgio Arnaldi,Rolf D. Klingenberg-Noftz,Nicole Reisch,Ambrogio Fassina,Laurent Brunaud,Martin A. Walter,Massimo Mannelli
出处
期刊:The Journal of Clinical Endocrinology and Metabolism [Oxford University Press]
卷期号:92 (7): 2784-2792 被引量:132
标识
DOI:10.1210/jc.2006-2833
摘要

Background: Neurofibromatosis type 1 (NF1) is a pheochromocytoma-associated syndrome. Because of the low prevalence of pheochromocytoma in NF1, we ascertained subjects by pheochromocytoma that also had NF1 in the hope of describing the germline NF1 mutational spectra of NF1-related pheochromocytoma. Materials and Methods: An international registry for NF1-pheochromocytomas was established. Mutation scanning was performed using denaturing HPLC for intragenic variation and quantitative PCR for large deletions. Loss-of-heterozygosity analysis using markers in and around NF1 was performed. Results: There were 37 eligible subjects (ages 14–70 yr). Of 21 patients with corresponding tumor available, 67% showed somatic loss of the nonmutated allele at the NF1 locus vs. 0 of 12 sporadic tumors (P = 0.0002). Overall, 86% of the 37 patients had exonic or splice site mutations, 14% large deletions or duplications; 79% of the mutations are novel. The cysteine-serine rich domain (CSR) was affected in 35% but the RAS GTPase activating protein domain (RGD) in only 13%. There did not appear to be an association between any clinical features, particularly pheochromocytoma presentation and severity, and NF1 mutation genotype. Conclusions: The germline NF1 mutational spectra comprise intragenic mutations and deletions in individuals with pheochromocytoma and NF1. NF1 mutations tended to cluster in the CSR over the RAS-GAP domain, suggesting that CSR plays a more prominent role in individuals with NF1-pheochromocytoma than in NF1 individuals without this tumor. Loss-of-heterozygosity of NF1 markers in NF1-related pheochromocytoma was significantly more frequent than in sporadic pheochromocytoma, providing further molecular evidence that pheochromocytoma is a true component of NF1.
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