SATB1通过上调癌症患者CLIP4/DZIIP1/PRICKLE2轴促进癌症进展和转移

Samina Gul, Amjad Ali, Shahzad Ahmad, Chong‐Yue Zhao, A. Shah, Kashif Rahim, N. Azam, Mohammad Tariq, Yasir Sardar, F. Hussain, Saraj Bahadur, Muhammad Shuaib
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引用次数: 1

摘要

SATB1 (Special AT-rich sequence binding protein 1)在染色质重塑和基因表达中起着关键作用。SATB1已被证明促进侵袭、迁移和转移。然而,SATB1在胃癌(GC)中的潜在分子机制、功能和临床病理特征仍然知之甚少。在这里,我们发现SATB1在GC进展中起关键作用。SATB1在GC患者样本中上调,并在不同GC亚型中与一组致癌蛋白(PRICKLE2、ZEB1、CBWX7、WWTR1、ENAH、DZIP1、IGSF11、ZSCAN18、GFRA2、GFRA1、FGFR1、HDAC4、GHR、TIMP3、CLIP4、TAGLN和ILK)共同扩增。SATB1与胃癌促癌基因呈正相关,可增强胃癌转移相关基因的表达,促进胃癌进展。SATB1在GC样品中增强WNT/NOTCH信号轴。相比之下,STAB1在GC样品中抑制肿瘤抑制基因网络。此外,SATB1的表达与胃癌患者的生存呈负相关。重要的是,我们发现SATB1共扩增基因CLIP4、DZIP1和PRICKLE2独立参与GC的进展。CLIP4、DZIP1和PRICKLE2过表达在胃癌患者中显示出较差的生存率。DZIP1在GC患者中增强AKT3/FGF2/FGFR1和CXCR3/CXCR6。PRICKLE2通过靶向FGFR1/NOTCH3/WNT4信号通路促进GC进展。综上所述,这些结果利用癌症生物信息学方法确定了SATB1、CLIP4、DZIP1和PRICKLE2在胃癌侵袭、迁移和转移中的新作用。这些结果提示了SATB1、CLIP4、DZIP1和PRICKLE2在胃癌患者中的临床意义,并且这些蛋白可能作为胃癌的预后标志物。这些结果也为SATB1、CLIP4、DZIP1和PRICKLE2在胃癌患者的治疗中提供了潜在的化疗靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SATB1 enhances gastric cancer progression and metastasis via upregulation of CLIP4/DZIP1/ PRICKLE2 axis in gastric cancer patients
SATB1 (Special AT-rich sequence binding protein 1) plays key role in chromatin remodeling and geneexpression. SATB1 has been shown to promote invasion, migration and metastasis. However, the underlying molecular mechanisms, function and clinicopathological features of SATB1 in gastric cancer (GC) remains poorly understood. Here, we show that SATB1 plays critical role in GC progression. SATB1 upregulates in GC patients’ samples and shows co-apmlification with a subset of oncogenic proteins (PRICKLE2, ZEB1, CBWX7, WWTR1, ENAH, DZIP1, IGSF11, ZSCAN18, GFRA2, GFRA1, FGFR1, HDAC4, GHR, TIMP3, CLIP4, TAGLN and ILK) in different subtypes of GC. SATB1 shows positive correlation with GC promoting oncogenes and enhances the expression of metastasis associated genes in GC samples to potentiate GC progression. SATB1 enhances WNT/NOTCH signaling axis in GC samples. In contrast, STAB1 suppresses a network of tumor suppressor genes in GC samples. Moreover, SATB1 expression negatively correlates with GC patient’s survival. Importantly, we found that SATB1 co-amplified genes CLIP4, DZIP1 and PRICKLE2 independently involve in GC progression. Overexpression of CLIP4, DZIP1 and PRICKLE2 show poor survival rates in GC patients. DZIP1 empowers AKT3/FGF2/FGFR1 and CXCR3/CXCR6 in GC patients. PRICKLE2 enhances GC progression by targeting FGFR1/NOTCH3/WNT4 signaling. Taken together, these results identified novel roles of SATB1, CLIP4, DZIP1 and PRICKLE2 in the GC invasion, migration and metastasis using cancer bioinformatics approach. These results highlights clinical significance of SATB1, CLIP4, DZIP1 and PRICKLE2 in GC patients and furthermore, these proteins may serve as prognostic markers in GC. These results also provide SATB1, CLIP4, DZIP1 and PRICKLE2 as potential chemotherapeutic targets in treatment of gastric cancer patients.
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来源期刊
Romanian Biotechnological Letters
Romanian Biotechnological Letters 生物-生物工程与应用微生物
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