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A functional role for Smad7 in sustaining colon cancer cell growth and survival

机译:Smad7在维持结肠癌细胞生长和存活中的功能性作用

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Initially identified as an inhibitor of transforming growth factor (TGF)- β mainly owing to its ability to bind TGF- β receptor type I and abrogate TGF- β -driven signaling, Smad7 can interact with additional intracellular proteins and regulate TGF- β -independent pathways, thus having a key role in the control of neoplastic processes in various organs. Genome-wide association studies have shown that common alleles of Smad7 influence the risk of colorectal cancer (CRC), even though the contribution of Smad7 in colon carcinogenesis is not fully understood. In this study, we assessed the expression and role of Smad7 in human and mouse models of sporadic CRC. We document a significant increase of Smad7 in human CRC relative to the surrounding nontumor tissues and show that silencing of Smad7 inhibits the growth of CRC cell lines both in vitro and in vivo after transplantation into immunodeficient mice. Knockdown of Smad7 results in enhanced phosphorylation of the cyclin-dependent kinase (CDK)2, accumulation of CRC cells in S phase and enhanced cell death. Smad7-deficient CRC cells have lower levels of CDC25A, a phosphatase that dephosphorylates CDK2, and hyperphosphorylated eukaryotic initiation factor 2 (eIF2) α , a negative regulator of CDC25 protein translation. Consistently, knockdown of Smad7 associates with inactivation of eIF2 α , lower CDC25A expression and diminished fraction of proliferating cells in human CRC explants, and reduces the number of intestinal tumors in Apc min/+ mice. Altogether, these data support a role for Smad7 in sustaining colon tumorigenesis.
机译:最初被确定为转化生长因子(TGF)-β的抑制剂,主要是由于其具有结合I型TGF-β受体和消除TGF-β驱动的信号传导的能力,Smad7可以与其他细胞内蛋白相互作用并调节TGF-β依赖性途径,因此在控制各种器官的肿瘤形成过程中具有关键作用。全基因组关联研究表明,即使尚未完全了解Smad7在结肠癌发生中的作用,Smad7的常见等位基因也会影响结直肠癌(CRC)的风险。在这项研究中,我们评估了Smad7在散发性CRC的人和小鼠模型中的表达和作用。我们记录了人类CRC相对于周围的非肿瘤组织的Smad7的显着增加,并表明Smad7的沉默抑制移植到免疫缺陷小鼠体内和体外的CRC细胞系的生长。敲除Smad7可导致细胞周期蛋白依赖性激酶(CDK)2磷酸化增强,CRC细胞在S期积累和细胞死亡增加。缺乏Smad7的CRC细胞具有较低水平的CDC25A(磷酸化CDK2的磷酸酶)和超磷酸化的真核生物起始因子2(eIF2)α(CDC25蛋白翻译的负调节剂)。一致地,Smad7的敲除与人类CRC外植体中eIF2α的失活,CDC25A表达降低和增殖细胞分数减少有关,并减少了Apc min / + 小鼠的肠道肿瘤数量。总之,这些数据支持Smad7在维持结肠肿瘤发生中的作用。

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