PO.TB10.11 · 肿瘤生物学

探索促进CLL细胞在与基质成纤维细胞接触时存活的表面相互作用因子

Exploring surface interactors promoting viability of CLL cells in contact with stromal fibroblasts

编号 6045 展板 22 时间 4/21 02:00–05:00 区域 Section 25 主讲 Uday Aditya Sarkar, PhD
分会场 Fibroblasts as Architects of the Tumor Microenvironment
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作者与单位 Authors & Affiliations

Uday Aditya Sarkar1, Domenico Maisano1, Stacey M. Fernandes1, Kiyomi Mashima1, Colin Mcnulty1, Nikhil C. Munshi1, Jennifer R. Brown1, Fabiana Perna2, Eugenio Morelli3, Paolo P. Ghia1

1Department of Medical Oncology, Dana-Farber Cancer Institute, Boston, MA,2Department of Blood and Marrow Transplant and Cellular Immunotherapy, Moffitt Cancer Center, Tampa, FL,3Candiolo Cancer Institute, Candiolo (TO), Italy

摘要 Abstract

中文摘要
引言 慢性淋巴细胞白血病(CLL)B细胞的存活和扩增受与组织微环境相互作用的强烈影响。这种促存活活性由间接和直接相互作用维持,分别通过可溶性因子和表面因子实现。在本研究中,我们旨在探索CLL细胞与其微环境基质之间鲜为人知的、支持CLL细胞活力增加的直接细胞间表面相互作用。 方法 将来自20例未经治疗的CLL患者(16例为IGHV未突变型)的原代CD19+/CD5+细胞与HS-5(一种人骨髓来源的成纤维细胞系)共培养或不共培养,同时单独培养HS-5细胞作为对照。72小时后,评估原代CLL细胞的活力,并分别从有和无CLL细胞的两种培养条件中收获HS-5细胞,进行RNA测序处理。采用细胞表面蛋白注释方法鉴定细胞表面表达的最主要蛋白。这些基因被用于设计封装于慢病毒颗粒中、用于感染HS-5细胞的CRISPR/Cas9筛选文库。 结果 正如预期,与基质的直接细胞接触在第3天使CLL B细胞的活力提高约30%(p < 0.0001),相较于单独培养的CLL细胞。使用表面蛋白注释方法,我们分析了从共培养生长的HS-5细胞获得的RNA-Seq数据,鉴定出120个基因的列表,这些基因可能编码表面蛋白,与单独培养的HS-5细胞相比呈差异表达。对这些基因的通路富集分析,尤其包括ALCAM、DDR2、TM4SF1、ITGB8和GJA1等显著名称,鉴定出若干关键细胞活动,如细胞粘附、细胞外基质蛋白结合、整合素结合和激酶结合。我们已创建了一个CRISPR/Cas9文库,以便能够直接在HS-5细胞中进行功能测试,选择性去除每个感兴趣的基因。这些经修饰的HS-5细胞将用于与原代CLL B细胞共培养,以鉴定其去除可能对我们体外模型中白血病细胞活力产生显著影响的特定基因。 结论 在我们的工作中,我们聚焦于CLL和基质细胞之间发生的、支持白血病克隆接触依赖性存活的表面相互作用。通过将基于RNA-seq的表面蛋白注释与靶向CRISPR筛选相结合,我们建立了一种功能性方法,用以鉴定基质细胞上可能参与直接表面相互作用的若干表面分子。该策略可能揭示可被靶向以破坏CLL-基质相互作用的微环境脆弱点。在治疗上,本研究可能为将基质界面界定为可利用的靶点、以在未来开拓CLL新型治疗策略铺平道路。
查看英文原文 English abstract
INTRODUCTION Survival and expansion of chronic lymphocytic leukemia (CLL) B cells are strongly shaped by interaction with the tissue microenvironment. This pro-survival activity is sustained by indirect and direct interactions, through soluble and surface factors, respectively. In this study, we aimed at exploring the lesser-known direct cell-to-cell surface interactions between CLL cells and their microenvironmental stroma that support the increased viability in CLL cells. METHODS Primary CD19+/CD5+ cells from 20 untreated patients with CLL (16 with unmutated IGHV) were cultured in the presence or absence of HS-5, a human bone marrow derived fibroblast cell line, that was also grown alone, as control. After 72 hours, viability of the primary CLL cells was assessed and HS-5 cells were harvested from the 2 culture conditions, with and without CLL cells, respectively, to be processed for RNA sequencing. Cell surface protein annotation method was used to identify the most prominent proteins expressed on the cell surface. These genes were used to design the CRISPR/Cas9 screening library encapsulated in lentiviral particles to infect HS-5 cells. RESULTS As expected, direct cellular contact with stroma increased the viability of CLL B cells by ~30% at day 3 (p < 0.0001) compared to CLL cells cultured alone. Using the method of surface protein annotation, we analyzed the RNA-Seq data obtained from HS-5 cells grown in co-culture and identified a list of 120 genes, likely coding for surface proteins, that were differentially expressed as compared to HS-5 cells cultured alone. Pathway enrichment analysis of these genes, particularly including notable names like ALCAM , DDR2 , TM4SF1 , ITGB8 & GJA1 etc., identified few vital cellular activities such as cell-adhesion, extracellular matrix protein binding, integrin binding and kinase binding. We have created a CRISPR/Cas9 library to enable functional testing directly in HS-5 cells to selectively remove each gene of interest. These modified HS-5 cells will be used for co-culture with primary CLL B cells to identify specific genes whose removal may show a significant impact on leukemic viability in our in vitro model. CONCLUSIONS In our work, we focused on the surface interactions, occurring between CLL and stromal cells, supporting the contact-dependent survival of the leukemic clone. By combining RNA-seq-based surface protein annotation with a targeted CRISPR screen, we establish a functional approach to identify a number of surface molecules on stromal cells that are potentially involved in direct surface interactions. This strategy may expose microenvironmental vulnerabilities that can be targeted to disrupt CLL-stroma interactions. Therapeutically, this study may pave the way to define the stromal interface as a tractable target to exploit novel treatment strategies for CLL in future.
利益披露 Disclosure
U. Sarkar, None.. D. Maisano, None.. S. M. Fernandes, None.. K. Mashima, None.. C. Mcnulty, None.. N. C. Munshi, None.. J. R. Brown, None.. F. Perna, None.. E. Morelli, None.. P. P. Ghia, None.

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