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信号素5A在胰腺癌进展和转移中的病理及功能意义

Pathological and functional significance of Semaphorin-5A in pancreatic cancer progression and metastasis.

作者信息

Saxena Sugandha, Hayashi Yuri, Wu Lingyun, Awaji Mohammad, Atri Pranita, Varney Michelle L, Purohit Abhilasha, Rachagani Satyanarayana, Batra Surinder K, Singh Rakesh K

机构信息

Department of Pathology and Microbiology, University of Nebraska Medical Center, Omaha, NE 68198, USA.

Department of Biochemistry and Molecular Biology, University of Nebraska Medical Center, Omaha, NE 68198, USA.

出版信息

Oncotarget. 2017 Dec 23;9(5):5931-5943. doi: 10.18632/oncotarget.23644. eCollection 2018 Jan 19.

Abstract

Semaphorin-5A (SEMA5A) has differential cell surface expression between normal and cancer cells and represents an attractive target for therapeutic intervention in pancreatic cancer (PC). In this study, we delineated the pathological expression and significance of SEMA5A during PC progression and metastasis. We utilized human tissue microarrays and different PC mouse models (Pdx1-cre; LSL- Kras, Pdx1-Cre; LSL-Kras; LSL-p53 and RIP1-Tag2) to analyze SEMA5A expression during PC progression. Using human patients and different mouse models, we demonstrated that SEMA5A expression was highest in liver metastases, followed by primary pancreatic tumors, and the lowest expression was found in the normal pancreas. SEMA5A expression was localized on tumor cells with no staining in the surrounding stroma. To understand the functional significance of SEMA5A, we treated PC cell lines with recombinant SEMA5A. We observed an increase in migration, chemotaxis, and scattering of PC cells. To delineate the signaling axis of SEMA5A, we generated SEMA5A receptor-Plexin-B3 knockdown in T3M-4 and CD18/HPAF PC cell lines and observed that the effect of SEMA5A treatment was absent in the Plexin-B3 knockdown counterparts of T3M-4 and CD18/HPAF cells. SEMA5A treatment leads to phosphorylation of cMET in Plexin-B3 dependent manner. Our data demonstrate that there is an increase in SEMA5A expression during PC progression and the elevation of this expression takes place at metastatic sites especially the liver in both exocrine and endocrine tumors. SEMA5A can elicit a migratory response in cells by activating cMET through the Plexin-B3 receptor. In conclusion, SEMA5A signaling represents a potential molecule for targeting metastasis in pancreatic cancer.

摘要

信号素-5A(SEMA5A)在正常细胞和癌细胞之间具有不同的细胞表面表达,是胰腺癌(PC)治疗干预的一个有吸引力的靶点。在本研究中,我们阐述了SEMA5A在PC进展和转移过程中的病理表达及其意义。我们利用人类组织微阵列和不同的PC小鼠模型(Pdx1-cre;LSL-Kras、Pdx1-Cre;LSL-Kras;LSL-p53和RIP1-Tag2)来分析PC进展过程中SEMA5A的表达。通过人类患者和不同的小鼠模型,我们证明SEMA5A在肝转移灶中的表达最高,其次是原发性胰腺肿瘤,而在正常胰腺中的表达最低。SEMA5A表达定位于肿瘤细胞,周围基质无染色。为了了解SEMA5A的功能意义,我们用重组SEMA5A处理PC细胞系。我们观察到PC细胞的迁移、趋化性和散射增加。为了阐明SEMA5A的信号轴,我们在T3M-4和CD18/HPAF PC细胞系中敲低了SEMA5A受体-Plexin-B3,并观察到在T3M-4和CD18/HPAF细胞的Plexin-B3敲低对应物中,SEMA5A处理没有效果。SEMA5A处理以Plexin-B3依赖的方式导致cMET磷酸化。我们的数据表明,在PC进展过程中SEMA5A表达增加,这种表达的升高发生在转移部位,特别是外分泌和内分泌肿瘤中的肝脏。SEMA5A可以通过Plexin-B3受体激活cMET,从而在细胞中引发迁移反应。总之,SEMA5A信号代表了一个潜在的胰腺癌转移靶向分子。

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