PO.TB10.05 · 肿瘤生物学
FGFR1在年轻和衰老宿主中驱动ER+乳腺癌脑转移的进展
FGFR1 drives progression of ER+ breast cancer brain metastases in young and aged hosts
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
这些研究的目的是明确驱动雌激素受体阳性(ER+)乳腺癌脑转移(BCBM)定植和生长的机制。大多数ER+ BCBM发生于绝经后女性,源于既往内分泌治疗或年龄因素,然而大多数体内ER+乳腺癌(BC)模型需要补充雌激素(E2)并使用年轻宿主。因此,衰老/E2耗竭脑肿瘤微环境(TME)中转移进展的机制仍不明确。FGFR1扩增(amp)是ER+ BC内分泌治疗耐药的一个公认驱动因素,是绝经后接受芳香化酶抑制剂治疗的ER+ BC女性中唯一与晚期复发增加相关的基因组改变,且与非脑转移的转移性BC相比,FGFR异常在BCBM患者中富集。虽然FGFR1amp常导致自激活,但TME依赖的FGFR1激活已成为调节其活性的一个重要机制。在此,我们检验了以下假说:星形胶质细胞和神经元对FGFR1的经典和非经典激活,在E2高的年轻宿主和E2低的衰老宿主中促进FGFR1依赖的ER+ BCBM。心内注射ER+细胞显示,FGFR1amp细胞系具有更高的脑转移发生率,且在年轻宿主中E2依赖,但在衰老宿主中不依赖。FGFR1敲低(KD)未改变增殖,但在E2高/年轻和E2低/衰老小鼠中均减少了BCBM。ER+ BCBM的TME空间转录组学显示,衰老和E2耗竭降低了周围胶质细胞中FGF2的表达以及FGF/FGFR信号,提示TME驱动的FGFR1激活在年轻和衰老宿主中可能不同。在正常脑中,NCAM1——一种在神经元和星形胶质细胞上表达的黏附分子,可激活FGFR1。我们发现NCAM1在ER+ BC细胞中激活FGFR1激酶活性和下游信号,并诱导包括神经细胞黏附在内的神经元基因特征的差异表达。FGFR1 KD减少了ER+ BC细胞与原代神经元共培养时沿神经突的迁移,并减少突触点。神经元样SH-SY5Y细胞中的NCAM1 KD也减少了ER+细胞迁移,提示FGFR1/NCAM1促进ER+ BC与神经元的相互作用,有助于早期脑定植。在定植的早期阶段,激活的FGFR1在年轻小鼠中高于衰老小鼠,但在晚期ER+ BCBM中缺失,提示旁分泌FGFR1激活及与神经元和星形胶质细胞的相互作用对早期定植至关重要。与此一致,一种FDA批准的FGFR抑制剂在年轻小鼠定植早期阶段给药时可阻断ER+ BCBM,但在晚期或衰老小鼠中无效。总之,这些研究提示了一种新颖机制,即FGFR1的经典和非经典激活促进年轻和衰老/E2耗竭宿主中ER+ BCBM的定植,并警示FGFR1抑制可能仅在预防而非治疗脑转移方面有效。
查看英文原文 English abstract
The purpose of these studies is to define mechanisms that drive estrogen receptor positive (ER+) breast cancer brain metastasis (BCBM) colonization and outgrowth. Most ER+ BCBMs arise in postmenopausal women due to prior endocrine therapies or age, yet most in vivo ER+ breast cancer (BC) models require estrogen (E2) supplementation and use young hosts. Thus, the mechanisms underlying metastatic progression in the aged/E2-depleted brain tumor microenvironment (TME) remain unknown. FGFR1-amplification (amp), an established driver of ER+ BC endocrine therapy resistance, was the only genomic alteration associated with increased late recurrence in post-menopausal women with ER+ BC on aromatase inhibitors, and FGFR aberrations are enriched in BCBM patients compared to non-BM metastatic BC. While FGFR1amp often causes auto-activation, TME-dependent FGFR1 activation has emerged as an important mechanism modulating its activity. Here, we tested the hypothesis that canonical and non-canonical activation of FGFR1 by astrocytes and neurons promotes FGFR1-dependent ER+ BCBM in E2-high young and E2-low aged hosts. Intracardiac injection of ER+ cells showed that FGFR1amp lines had higher BM incidence, and were E2-dependent in young but not aged hosts. FGFR1 knockdown (KD) did not alter proliferation but decreased BCBM in both E2-high/young and E2-low/aged mice. Spatial transcriptomics of the ER+ BCBMs TME showed that aging and E2-depletion reduced FGF2 expression and FGF/FGFR signaling in surrounding glial cells, suggesting that TME-driven FGFR1 activation may be distinct in young and aged hosts. In the normal brain, NCAM1, an adhesion molecule expressed on neurons and astrocytes, can activate FGFR1. We found that NCAM1 activated FGFR1 kinase activity and downstream signaling in ER+ BC cells, and induced differential expression of neuronal gene signatures including neural cell adhesion. FGFR1 KD reduced ER+ BC cell migration along neurites in co-culture with primary neurons and decreased synaptic puncta. NCAM1 KD in neuron-like SH-SY5Y cells also decreased ER+ cell migration, suggesting that FGFR1/NCAM1 facilitates ER+ BC interactions with neurons, contributing to early brain colonization. Activated FGFR1 was higher in young versus aged mice at early stages of colonization but absent in late-stage ER+ BCBMs, suggesting that paracrine FGFR1 activation and interactions with neurons and astrocytes are critical for early colonization. Consistently, an FDA-approved FGFR inhibitor blocked ER+ BCBM when administered at early stages of colonization in young mice but had no effect at late stages or in aged mice. Together, these studies suggest a novel mechanism whereby canonical and non-canonical activation of FGFR1 promote ER+ BCBM colonization in young and aged/E2-depleted hosts, and caution that FGFR1 inhibition may only be effective to prevent but not to treat BMs.
利益披露 Disclosure
M. S. Fox, None..
J. A. Jaramillo-Gómez, None..
R. Marquez-Ortiz, None..
K. L. F. Alvarez-Eraso, None..
M. J. Contreras-Zárate, None..
T. C. Pham, None..
E. N. Barela, None..
S. Koliavas, None..
P. Kabos, None..
C. A. Sartorius, None..
E. A. Wellberg, None..
D. M. Cittelly, None.