PO.MCB11.02 · 分子与细胞生物学

PHLDA1下调导致MCF-7乳腺癌细胞形态改变和增殖增强的功能作用

Functional role of PHLDA1 down regulation leads to morphological changes and increased proliferation in MCF-7 breast cancer cells

海报缩略图:PHLDA1下调导致MCF-7乳腺癌细胞形态改变和增殖增强的功能作用
编号 3332 展板 7 时间 4/20 02:00–05:00 区域 Section 25 主讲 Ana Carolina Pavanelli, PhD
分会场 Tumorigenesis Drivers
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作者与单位 Authors & Affiliations

Ana Carolina Pavanelli1, Flavia Rotea Mangone1, Fernando M. Simabuco2, Maria Aparecida Nagai3

1Center for Translational Research in Oncology, Instituto do Câncer do Estado de São Paulo and Comprehensive Center for Precision Oncology, São Paulo, Brazil,2Departamento de Bioquímica, Universidade Federal de São Paulo, São Paulo, Brazil,3Center for Translational Research in Oncology, Instituto do Câncer do Estado de São Paulo and Comprehensive Center for Precision Oncology/Disciplina de Oncologia do Departamento de Radiologia e Oncologia, São Paulo, Brazil

摘要 Abstract

中文摘要
PHLDA1(pleckstrin同源样结构域家族A成员1)属于一个编码磷脂酰肌醇(PIP)结合蛋白并作为Akt激活抑制剂发挥功能的基因家族。既往我们已证明,PHLDA1下调是乳腺癌(BC)患者预后不良的强预测因子。我们还证明,PHLDA1表达降低与非恶性乳腺细胞更具侵袭性的行为相关,并与更具侵袭性的BC表型和更差的预后相关。此外,我们证明PHLDA1表达受雌激素通过ER调控。在此,我们旨在研究PHLDA1敲低对细胞增殖、迁移和集落形成的影响,并进一步评估其在内分泌治疗响应中的作用。使用CRISPR/Cas9载体(pSpCas9(BB)-2A-Puro(PX459)V2.0)转染MCF-7细胞,该载体包含设计用于沉默PHLDA1基因的向导RNA(gRNA),以及含有乱序gRNA的对照载体。PHLDA1敲低克隆(MCF-7koPHLDA1)通过蛋白质印迹和qRT-PCR得到确认。MCF-7koPHLDA1克隆表现出形态学改变,包括失去规则的多角形和纺锤形以及更为分散的细胞排列。我们进行了比色MTT还原实验以评估PHLDA1敲低对增殖的影响。MCF-7koPHLDA1的增殖率显著高于转染含乱序序列载体的MCF-7(MCF-7-SC)。此外,集落形成实验后结晶紫染色显示,与MCF-7-SC相比,MCF-7koPHLDA1还表现出更高的集落形成能力,细胞排列分散且细胞间接触有限。我们的数据表明,PHLDA1表达降低会增强MCF7细胞的增殖和集落形成能力。此外,将对所获得的克隆进行评估,以研究PHLDA1表达如何影响它们对他莫昔芬(tamoxifen)和氟维司群(fulvestrant)治疗的响应。本研究由FAPESP资助。
查看英文原文 English abstract
The PHLDA1 (pleckstrin homology-like domain Family A, member 1) belongs to a family of genes that encode phosphatidylinositol (PIP) binding proteins and function as inhibitors of Akt activation. Previously, we have shown that PHLDA1 down-regulation is a strong predictor of poor prognosis for breast cancer (BC) patients. We have also demonstrated that decreased PHLDA1 expression is associated with more aggressive behavior in non-malignant mammary cells and is linked to a more aggressive BC phenotype and a worse prognosis. Additionally, we demonstrated that PHLDA1 expression is regulated by estrogen via ER. Here, we sought to investigate the effects of PHLDA1 knockdown on cell proliferation, migration, and colony formation, and further assess its involvement in the response to endocrine therapies. The MCF-7 cells were transfected using a CRISPR/Cas9 vector (p5pCas(BB)-2A-Puro (PX459) V2.0) that included guide RNAs (gRNAs) designed to silence the PHLDA1 gene, as well as a control vector with scrambled gRNAs. PHLDA1 knockdown clones (MCF-7koPHLDA1) were confirmed by western blot and qRT-PCR. MCF-7koPHLDA1 clones displayed morphological changes, including loss of regular angular and spindle shapes and a more dispersed cell arrangement. We performed the colorimetric MTT reduction assay to evaluate the effect of PHLDA1 knockdown on the proliferation. MCF-7koPHLDA1 has significantly higher proliferation rates than MCF-7 transfected with the vector containing a scramble (MCF-7-SC). In addition, a clonogenic assay followed by crystal violet staining showed that MCF-7koPHLDA1 also exhibited higher colony-forming ability, with a dispersed organization and limited cell-cell contact, compared with MCF-7-SC. Our data suggest that decreased PHLDA1 expression enhances the proliferation and colony-forming ability of MCF7 cells. Additionally, the obtained clones will be assessed for how PHLDA1 expression influences their response to tamoxifen and fulvestrant treatments. Supported by FAPESP.
利益披露 Disclosure
A. Pavanelli, None.. F. R. Mangone, None.. F. M. Simabuco, None.. M. Nagai, None.

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