PO.TB10.12 · 肿瘤生物学
排列的ECM通过YAP-WT1结合影响神经母细胞瘤细胞可塑性
Aligned ECM influences neuroblastoma cell plasticity via YAP-WT1 association
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
引言
神经母细胞瘤(NB)是最常见的儿童颅外实体瘤,由两种可相互转化的细胞状态组成:侵袭性较低的肾上腺素能(ADRN)亚型和侵袭性强、治疗耐药的间质(MES)亚型。通过ADRN向MES转化(AMT),NB细胞对现有治疗药物变得更加难治,这在高危(HR)和复发NB中常被观察到。我们此前发现,高危和复发NB中出现的排列的细胞外基质(ECM)蛋白通过促进ADRN特征的表观遗传沉默来驱动NB中的AMT。本研究旨在进一步表征驱动NB中AMT的潜在机制,具体是排列的ECM如何通过激活yes相关蛋白(YAP)增加MES特征,YAP与Wilms肿瘤1(WT1)相互作用以调控MES驱动因子成对相关同源框1(PRRX1)的活性。
实验步骤
为探究排列的ECM如何影响MES特征,我们采用纳米沟槽胶原包被阵列(NGCA),其模拟了在高危和复发NB中观察到的排列胶原。将细胞铺于该体外平台上,通过包括Western blot、免疫荧光(IF)染色和染色质免疫沉淀测序(ChIP-seq)在内的生化分析评估MES特征以及YAP、WT1和PRRX1表达的差异。我们还使用YAP敲低和过表达以及WT1敲低的细胞,以确定它们在我们提出的AMT机制中的作用。使用邻近连接测定(PLA)和共免疫沉淀(co-IP)对YAP和WT1的结合进行物理评估。
结果
我们的数据表明,用NGCA在体外模拟的排列ECM增加了NB中的MES特征和YAP表达。NGCA还以YAP依赖的方式促进MES驱动因子PRRX1的表达,提示PRRX1被YAP募集以增加MES特征。此外,ChIP-seq突出显示了YAP与WT1之间促进PRRX1表达的结合。计算分析确定WT1是与PRRX1相互作用的转录因子,我们通过WT1敲低后PRRX1表达降低证实了这一关联。我们显示WT1的表达和核定位与YAP活性相关;事实上,PLA和co-IP分析揭示,YAP和WT1响应NGCA形成复合物,随后转位至细胞核。
结论
总之,我们的数据支持这样一种机制:YAP和WT1响应排列的ECM相互作用以促进PRRX1表达,从而增加MES特征。这一过程的确定揭示了用于使高危和复发NB对现有治疗重新敏感化的药理学和治疗靶点,以改善临床结局。
查看英文原文 English abstract
Introduction
Neuroblastoma (NB) is the most common extracranial pediatric solid tumor and is comprised of two interconvertible cell states: the less-aggressive adrenergic (ADRN) and the aggressive, therapy-resistant mesenchymal (MES) subtypes. Through an ADRN-to-MES transition (AMT), NB cells become more refractory to existing therapeutics, as is often observed in high-risk (HR) and relapsed NB. We previously identified that aligned extracellular matrix (ECM) proteins, featured in HR and relapsed NB, drive AMT in NB by facilitating epigenetic silencing of ADRN signatures. Our study aims to further characterize the underlying mechanisms driving AMT in NB, specifically how aligned ECM increases MES signatures through activation of yes-associated protein (YAP), which interacts with Wilm's Tumor 1 (WT1) to regulate activity of the MES driver, paired related homeobox 1 (PRRX1).
Experimental Procedures
To interrogate how aligned ECM influences MES signatures, we employ a nanogrooved collagen-coated array (NGCA) that models the aligned collagen observed in HR and relapsed NB. Cells plated on this in vitro platform are assessed for differences in MES signatures and expression of YAP, WT1, and PRRX1 via biochemical analyses including Western blot, immunofluorescent (IF) staining, and chromatin immunoprecipitation sequencing (ChIP-seq). We also use cells with knockdown and overexpression of YAP as well as knockdown of WT1 to determine their roles in our proposed AMT mechanism. The association of YAP and WT1 is physically evaluated using proximity ligation assay (PLA) and co-immunoprecipitation (co-IP).
Results
Our data demonstrate that aligned ECM modeled in vitro with NGCA increases MES signatures and YAP expression in NB. NGCA additionally promotes expression of the MES driver PRRX1 in a YAP-dependent manner, suggesting its recruitment by YAP to increase MES signatures. Furthermore, ChIP-seq highlights an association between YAP and WT1 that promotes PRRX1 expression. Computational analysis identifies WT1 as a transcription factor interacting with PRRX1, an association we confirm through reduction of PRRX1 expression following WT1 knockdown. We show that WT1 expression and nuclear localization are associated with YAP activity; indeed, PLA and co-IP analyses reveal that YAP and WT1 form a complex in response to NGCA, which then translocates to the nucleus.
Conclusions
Together our data support a mechanism by which YAP and WT1 interact in response to aligned ECM to promote PRRX1 expression, thereby increasing MES signatures. Identification of this process uncovers pharmacological and therapeutic targets for re-sensitization of HR and relapsed NB to existing treatments to improve clinical outcomes.
利益披露 Disclosure
V. Zamloot, None..
C. K. Vemula, None..
A. Chronopoulos, None..
J. Park, None.