PO.PS01.08 · 人群科学
祖源富集的 ACKR1 种系变异及其对正常和乳腺癌生物学的功能影响
Ancestry-enriched ACKR1 germline variant and its functional impact on normal and breast cancer biology
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
非典型趋化因子受体 1(ACKR1)基因在其调控区和编码区携带单核苷酸多态性。调控区变异 rs2814778 在非洲和阿拉伯人群中富集,并赋予对疟疾感染的保护作用。然而,它导致 Duffy 阴性(CC)/杂合(C/T)表型,其特征是上皮和非上皮细胞中 ACKR1 表达显著降低。ACKR1 作为多种趋化因子(包括与乳腺癌转移相关的 CXCL12)的诱饵受体发挥作用,以调节免疫/炎症通路。目前人们越来越有兴趣将 Duffy 基因分型纳入临床试验设计,以解释黑人女性侵袭性乳腺癌预后背后的正常生物学差异。我们试图研究 ACKR1 变异对乳腺癌预后的潜在影响,长期目标是鉴定治疗上的脆弱性。我们通过使用来自 Komen 正常组织库机构资源的乳腺组织,生成具有功能性 TT(表达 ACKR1 的野生型——非洲和欧洲祖源)、杂合(C/T)和纯合(CC)的永生化乳腺上皮细胞系,建立了一个模型系统。在调控区,具有 TT 的细胞系表达的 ACKR1 mRNA 水平高于 C/T 或 CC。我们假设 ACKR1 表达降低会改变趋化因子信号传导,从而可能影响内在和外在信号传导以激活下游致癌通路。为验证这一点,我们研究了 WNT/GSK-3beta 信号传导,观察到 ACKR1 变异影响 beta-连环蛋白的差异性磷酸化,促进其核转位。我们试图进一步探索由 ACKR1 变异导致分泌的细胞因子(包括炎性 IL-6)对下游致癌通路的影响。我们观察到,与 TT 相比,ACKR1 CC 和 C/T 乳腺上皮细胞中 STAT3(IL-6 活性的替代指标)的磷酸化增加。我们对 UALCAN 数据库的分析进一步揭示,乳腺癌中 ACKR1 表达降低与进展为脑转移相关。与此一致,我们的结果证明 ACKR1 CC 和 C/T 细胞中 CD271 高表达群体富集,提示存在癌症干细胞样特性。这些发现提示 ACKR1 表达降低可能促进干细胞样和转移特性的获得。体内研究正在进行中,以评估 ACKR1 状态对不同肿瘤特征的影响,包括癌症干细胞特性、转移潜能增加以及对靶向和常规化疗的反应。本研究的积极结果将产生变革性影响,确立 ACKR1 种系变异作为乳腺癌生物学决定因素的地位,并突显将祖源信息基因型整合到临床试验设计和治疗决策中的必要性。
查看英文原文 English abstract
Atypical chemokine receptor 1 ( ACKR1 ) gene, harbors single nucleotide polymorphisms in its regulatory and coding regions. The regulatory region variant rs2814778 is enriched in African and Arab populations and it confers protection against malarial infection. However, it is responsible for the Duffy-Null (CC) /heterozygous (C/T) phenotype, characterized by a significant reduction in ACKR1 expression in epithelial and non-epithelial cells. ACKR1 functions as a decoy receptor for several chemokines including the breast cancer metastasis-associated CXCL12, to regulate immune/ inflammatory pathways. There is a growing interest to include Duffy genotyping in clinical trial design to account for normal biological differences underlying aggressive breast cancer outcomes in black women. We seek to investigate the potential influence of ACKR1 variant on breast cancer outcomes, with a long-term goal of identifying therapeutic vulnerabilities. We established a model system by generating immortalized breast epithelial cell lines with functional TT (wild type that express ACKR1 -African and European ancestry), heterozygous ( C/T ) and homozygous ( CC ), using breast tissues from the institutional resource of Komen Normal Tissue bank. Cell lines with TT expressed higher ACKR1 mRNA levels relative to C/T or CC in the regulatory region. We hypothesized that reduced ACKR1 expression alters chemokine signaling which may influence intrinsic and extrinsic signaling to activate downstream oncogenic pathways. To test this, we investigated WNT/GSK-3beta signaling and observed that ACKR1 variant influences differential phosphorylation of beta-catenin, facilitating nuclear translocation. We sought to explore further the effect of cytokines including inflammatory IL-6 secreted as a result of ACKR1 variant on downstream oncogenic pathways. We observed increased phosphorylation of STAT3, a surrogate of IL-6 activity in breast epithelial cells of ACKR1 CC and C/T cells compared to TT . Our analysis of the UALCAN database further revealed that reduced ACKR1 expression in breast cancer correlates with progression to brain metastases. Consistent with this, our results demonstrate enrichment of CD271-high populations; indicative of cancer stem-like properties in ACKR1 CC and C/T cells. These findings suggest that reduced ACKR1 expression may promote acquisition of stem-like and metastatic properties. In vivo studies are underway to evaluate the effect of ACKR1 status on distinct tumor characteristics including cancer stem cell properties, increased metastatic potential and response to targeted and conventional chemotherapy. A positive outcome from this study will have a transformative impact, establishing ACKR1 germline variants as determinants of breast cancer biology and highlight the need to integrate ancestry-informed genotypes into clinical trial design and therapeutic decision-making.
利益披露 Disclosure
S. Adama, None..
A. Adebayo, None..
S. Kacar, None..
P. Bhat-Nakshatri, None..
J. Guanglong, None..
C. Erdogan, None..
B. P. Schneider, None..
K. D. Miller, None..
H. Nakshatri, None.