LBPO.TB01 · 肿瘤生物学 · Late-Breaking
阐明免疫微环境对早期卵巢透明细胞癌进化动态的影响
Elucidating the impact of the immune microenvironment on the evolutionary dynamics of early-stage ovarian clear cell carcinoma
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
卵巢透明细胞癌(OCCC)是上皮性卵巢癌的一种侵袭性亚型,其特征为复发率高、预后较其他卵巢癌更差。它在全球范围内死亡率升高,尤其是在台湾地区。引人注目的是,具有免疫热型微环境的OCCC病例表现出更差的生存结局,这挑战了'热'肿瘤预后更好这一传统认识。这一悖论促使我们研究免疫热型微环境如何影响OCCC进展并导致这些反直觉的生存结局。在本研究中,我们利用高突变多聚鸟嘌呤(polyG)序列内的插入-缺失(indel)变异(突变率:~10^-6-10^-4)来重建一个20例早期OCCC患者队列的系统发育。这些患者依据预定义的免疫状态被均匀分层为免疫热型和免疫冷型表型。从11个病例的子集(7例免疫热型和4例免疫冷型)中,我们共采集了201份样本。使用已发表的polyG位点突变率(9.43*10^-5),我们将polyG系统发育转换为细胞分裂树,以客观量化谱系。我们进一步通过全外显子组测序(WES)检验系统发育模式和克隆性。通过比较各系统发育之间的进化过程,我们通过总细胞分裂数和MRCA分裂在免疫热型肿瘤中鉴定出一个独特亚组,可能解释了意外的生存结局。我们比较了三组:免疫热型亚组1、免疫热型亚组2和免疫冷型肿瘤。系统发育分析显示,亚组1从合子到MRCA所经历的细胞分裂数显著多于亚组2和免疫冷型肿瘤(1744对742对936,p = 0.012),尽管克隆复杂度相似(CV:26.04%对29.34%对34.18%,p = 0.52)。然而,亚组1表现出显著更低的两两遗传距离(0.08对0.10对0.10,p = 2.73 × 10^-9),暗示近期发生了克隆清扫。这一发现进一步得到样本间聚合比率(CoaR)的支持,该指标量化样本之间共享的进化历史。亚组1表现出显著高于亚组2和免疫冷型肿瘤的比率(0.96对0.80对0.80,p = 1.52 × 10^-46),表明高度的系统发育相似性。相反,当从WES数据量化克隆多样性时(使用CONIPHER和香农多样性指数),亚组1显示出高于亚组2和免疫冷型肿瘤的多样性(1.32对0.70对0.87,p = 0.012)。这种差异——高基因组多样性却低系统发育异质性——提示亚组1中存在消除新克隆的强烈选择压力。最后,我们观察到,尽管亚组2与免疫冷型肿瘤具有相似的克隆结构,但它与最差的生存结局相关(p = 0.0019)。这提示亚组2可能代表一种独特的进化轨迹或中间状态,具有促进侵袭性进展的适应性特征。这些发现凸显了免疫热型肿瘤内部的异质性,并为高免疫浸润在OCCC中为何并不总是与有利生存相关提供了一种潜在解释。
查看英文原文 English abstract
Ovarian clear cell carcinoma (OCCC) is an aggressive subtype of epithelial ovarian cancer, characterized by high recurrence rates and poorer prognosis compared to other ovarian cancers. It has an elevated mortality worldwide, particularly in Taiwan. Strikingly, OCCC cases with an immune-hot microenvironment exhibited worse survival outcomes, challenging the conventional understanding that 'hot' tumors confer a better prognosis. This paradox prompts our investigation into how the immune-hot microenvironment influences OCCC progression and leads to these counterintuitive survival outcomes In this study, we utilized insertion-deletion (indel) variants within hypermutable polyguanine (polyG) sequences (mutation rate: ~10 -6 -10 -4 ) to reconstruct the phylogeny of a cohort of 20 early-stage OCCC patients. These patients were evenly stratified into immune-hot and immune-cold phenotypes based on their predefined immune status. From a subset of 11 cases (7 immune-hot and 4 immune-cold), we collected a total of 201 samples. Using the published mutation rate for polyG loci (9.43*10 -5 ), we converted the polyG phylogenies into cell-division trees to objectively quantify the lineages. We further examined phylogenetic patterns and clonality through whole-exome sequencing (WES). By comparing evolutionary processes across phylogenies, we identified a distinct subgroup through total cell divisions and MRCA division within the immune-hot tumors that may explain unexpected survival outcomes. We compared three groups: immune-hot Subgroup 1, immune-hot Subgroup 2, and immune-cold tumors. Phylogenetic analysis revealed that Subgroup 1 underwent significantly more cell divisions from the zygote to the MRCA compared to Subgroup 2 and immune-cold tumors (1744 vs. 742 vs. 936, p = 0.012), despite maintaining similar clonal complexity (CV: 26.04% vs. 29.34% vs. 34.18%, p = 0.52). However, Subgroup 1 exhibited a significantly lower pairwise genetic distance compared to the other groups (0.08 vs. 0.10 vs. 0.10, p = 2.73 × 10 -9 ), implying a recent clonal sweep. This finding was further supported by the sample-wise coalescence ratio (CoaR), a metric that quantifies the shared evolutionary history between samples. Subgroup 1 exhibited a significantly higher ratio than Subgroup 2 and immune-cold tumors (0.96 vs. 0.80 vs. 0.80, p = 1.52 × 10 - 46 ), indicating high phylogenetic similarity. Conversely, when quantifying clonal diversity from WES data (using CONIPHER and the Shannon diversity index), Subgroup 1 displayed higher diversity than Subgroup 2 and immune-cold tumors (1.32 vs. 0.70 vs. 0.87, p = 0.012). This discrepancy, high genomic diversity yet low phylogenetic heterogeneity, suggests intense selection pressure in Subgroup 1 that eliminates neo-clones. Finally, we observed that while Subgroup 2 shared a similar clonal structure to immune-cold tumors, it was associated with the worst survival outcomes (p = 0.0019). This suggests that Subgroup 2 may represent a distinct evolutionary trajectory or intermediate state, possessing adaptive features that facilitate aggressive progression. These findings highlight the heterogeneity within immune-hot tumors and offer a potential explanation for why high immune infiltration does not always correlate with favorable survival in OCCC."
利益披露 Disclosure
Y. Huang, None..
Y. Chen, None..
P. Cheng, None..
K. Chen, None..
A. Yang, None..
H. Huang, None..
R. Huang, None..
L. Wei, None..
W. Hung, None.