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靶向酪氨酸激酶信号通路中的 SYK 抑制卵巢肿瘤细胞侵袭。

Inhibition of ovarian tumor cell invasiveness by targeting SYK in the tyrosine kinase signaling pathway.

机构信息

Sidney Kimmel Comprehensive Cancer Center, Johns Hopkins Medical Institutions, Baltimore, MD, 21205, USA.

Department of Pathology, Johns Hopkins Medical Institutions, Baltimore, MD, 21287, USA.

出版信息

Oncogene. 2018 Jul;37(28):3778-3789. doi: 10.1038/s41388-018-0241-0. Epub 2018 Apr 11.

Abstract

Cell motility and invasiveness are prerequisites for dissemination, and largely account for cancer mortality. We have identified an actionable kinase, spleen tyrosine kinase (SYK), which is keenly tightly associated with tumor progression in ovarian cancer. Here, we report that active recombinant SYK directly phosphorylates cortactin and cofilin, which are critically involved in assembly and dynamics of actin filament through phosphorylation signaling. Enhancing SYK activity by inducing expression of a constitutively active SYK mutant, SYK, increased growth factor-stimulated migration and invasion of ovarian cancer cells, which was abrogated by cortactin knockdown. Similarly, SYK inhibitors significantly decreased invasion of ovarian cancer cells across basement membrane in real-time transwell assays and in 3D tumor spheroid models. SYK inactivation by targeted gene knockout or by small molecule inhibition reduced actin polymerization. Collectively, this study reported a new mechanism by which SYK signaling regulates ovarian cancer cell motility and invasiveness, and suggest a target-based strategy to prevent or suppress the advancement of ovarian malignancies.

摘要

细胞迁移和侵袭是扩散的前提条件,也是导致癌症死亡的主要原因。我们已经确定了一种可操作的激酶,脾酪氨酸激酶(SYK),它与卵巢癌中的肿瘤进展密切相关。在这里,我们报告说,活性重组 SYK 直接磷酸化肌动蛋白丝组装和动力学所必需的丝切蛋白和原肌球蛋白,通过磷酸化信号。通过诱导组成性激活的 SYK 突变体 SYK 的表达来增强 SYK 活性,增加了生长因子刺激的卵巢癌细胞的迁移和侵袭,而这一过程被丝切蛋白敲低所阻断。同样,SYK 抑制剂在实时 Transwell 测定和 3D 肿瘤球体模型中显著降低了卵巢癌细胞穿过基底膜的侵袭。通过靶向基因敲除或小分子抑制来抑制 SYK 失活,减少了肌动蛋白聚合。总之,这项研究报道了 SYK 信号调节卵巢癌细胞迁移和侵袭的新机制,并提出了一种基于靶向的策略来预防或抑制卵巢恶性肿瘤的进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df2c/6043408/0258f784deea/nihms948441f1.jpg

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