PO.MCB08.04 · 分子与细胞生物学
肺神经内分泌肿瘤的全基因组测序揭示一种伴CCND扩增的TP53 WT/RB1 WT亚型
Whole-genome sequencing of lung neuroendocrine neoplasms reveals a TP53 WT / RB1 WT subtype with CCND amplification
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
背景:肺神经内分泌肿瘤(LNEN)涵盖一系列实体,包括典型/非典型类癌、大细胞神经内分泌癌(LCNEC)和小细胞肺癌(SCLC)。来自全基因组测序(WGS)和靶向panel测序的数据显示,SCLC通常在91%的病例中伴有TP53和RB1的双等位基因失活。虽然SCLC已通过WGS得到广泛谱分析,但其他LNEN亚型主要通过靶向panel或全外显子组测序进行研究,限制了全面的基因组表征。为推进对早期LNEN生物学的理解,我们对涵盖LNEN全谱系的手术切除队列进行了WGS。
方法:我们分析了首尔国立大学医院58例手术切除LNEN的约30×WGS数据(类癌n=11;LCNEC n=22;SCLC n=25)。评估了体细胞单核苷酸变异(SNV)、结构变异(SV)、拷贝数谱及突变signature。
结果:在整个队列中,SV/SNV负荷中位数为类癌0.015 [28/1,929]、LCNEC 0.006 [186/28,954]、SCLC 0.002 [62/36,181]。三份SCLC样本相比其他SCLC表现出显著升高的SV/SNV比值(患者#135:0.092 [345/3,750];患者#144:0.158 [331/2,098];患者#147:0.031 [94/3,053];其他SCLC:0.000-0.005)。这一模式在LCNEC中不存在,但在一份类癌样本中检出(患者#126:0.024 [50/2,128])。这四例(三例SCLC,一例类癌)均一致缺乏烟草相关突变signature,且为TP53 WT/RB1 WT。来自患者#126和#135的两份样本显示累及3号和11号染色体的染色体碎裂(chromothripsis),而来自患者#144和#147的其余两份样本显示12号与20号染色体之间的密集重排并伴显著的拷贝数振荡。这些改变汇聚于CCND1(chr11)或CCND2和CDK4(chr12)的扩增,并共有累及FHIT、TGFBR2的缺失及partner染色体上的额外拷贝数改变。病理复核进一步在一例SCLC病例(患者#135)中揭示了共存的非典型类癌和SCLC成分。
结论:所有四例均表现出趋同的CCND-CDK4通路激活及特征性的复杂SV驱动的基因组重塑。结合患者#135中非典型类癌与SCLC的组织学共存,这些数据提出了CCND依赖性SCLC可能源自类癌前体的可能性。患者#126中一例类癌的观察为CCND依赖性肿瘤发生提供了独立证据。尽管受样本量限制,我们的发现凸显了一个独特的早期LNEN亚群,其以灾难性SV事件和G1-S检查点失调为定义特征,提示对细胞周期靶向策略存在潜在的治疗易感性。
查看英文原文 English abstract
Background: Lung neuroendocrine neoplasms (LNENs) comprise a spectrum of entities, including typical/atypical carcinoid, large cell neuroendocrine carcinoma (LCNEC), and small cell lung cancer (SCLC). Data from both whole-genome sequencing (WGS) and targeted panel sequencing show that SCLC is typically associated with biallelic inactivation of TP53 and RB1 in 91% of cases. While SCLC has been extensively profiled using WGS, other LNEN subtypes have largely been investigated using targeted panels or whole-exome sequencing, limiting comprehensive genomic characterization. To advance the understanding of early-stage LNEN biology, we performed WGS on a surgically resected cohort spanning the full spectrum of LNENs.
Methods: We analyzed ~30× WGS data from 58 surgically resected LNENs at Seoul National University Hospital (carcinoid n=11; LCNEC n=22; SCLC n=25). Somatic single-nucleotide variants (SNVs), structural variants (SVs), copy-number profiles, and mutational signatures were evaluated.
Results : Across the cohort, median SV/SNV burdens were 0.015 [28/1,929] for carcinoids, 0.006 [186/28,954] for LCNECs, and 0.002 [62/36,181] for SCLCs. Three SCLC samples exhibited markedly elevated SV/SNV ratios compared with other SCLCs (patient #135: 0.092 [345/3,750]; patient #144: 0.158 [331/2,098]; patient #147: 0.031 [94/3,053]; other SCLCs: 0.000-0.005). This pattern was absent in LCNECs but was detected in one carcinoid sample (patient #126: 0.024 [50/2,128]). These four cases (three SCLCs, one carcinoid) uniformly lacked tobacco-associated mutational signatures and were TP53 WT / RB1 WT . Two samples from patients #126 and #135 demonstrated chromothripsis involving chromosomes 3 and 11, whereas the remaining two from patients #144 and #147 showed dense rearrangements between chromosomes 12 and 20 with prominent copy-number oscillations. These alterations converged on amplification of CCND1 (chr11) or CCND2 and CDK4 (chr12), with shared losses involving FHIT , TGFBR2 , and additional copy-number alterations on partner chromosomes. Pathologic review further revealed coexisting atypical carcinoid and SCLC components in one SCLC case (patient #135).
Conclusions: All four cases displayed convergent CCND - CDK4 pathway activation and characteristic complex SV-driven genome remodeling. Together with the histological coexistence of atypical carcinoid and SCLC in patient #135, these data raise the possibility that CCND -dependent SCLC may evolve from a carcinoid precursor. The observation of one carcinoid in patient #126 provides independent evidence of CCND -dependent tumorigenesis. Although limited by sample size, our findings highlight a distinct, early-stage LNEN subset defined by catastrophic SV events and G1-S checkpoint dysregulation, suggesting potential therapeutic vulnerability to cell-cycle-targeted strategies.
利益披露 Disclosure
M. Ha, None..
K. Na, None..
S. Kim, None..
M. Kim, None..
B. Keam, None..
T. Kim, None..
D. Kim, None..
J. Youk, None..
Y. Kim, None.