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首页> 外文期刊>American Journal of Physiology >Wnt5a secretion stimulated by the extracellular calcium-sensing receptor inhibits defective Wnt signaling in colon cancer cells.
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Wnt5a secretion stimulated by the extracellular calcium-sensing receptor inhibits defective Wnt signaling in colon cancer cells.

机译:细胞外钙敏感受体刺激的Wnt5a分泌抑制结肠癌细胞中有缺陷的Wnt信号传导。

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摘要

To understand the role of the colonic extracellular calcium-sensing receptor (CaSR) in calcium chemoprotection against colon cancer, we activated the CaSR with 5 mM Ca(2+) on HT-29 cells, an adenocarcinoma cell line. High Ca(2+) stimulated the upregulation (as assessed by RT-PCR) and the secretion of Wnt5a (assessed by Western blot), a noncanonical Wnt family member. Inhibiting CaSR activity with a short interfering RNA (siRNA) duplex against the CaSR reduced CaSR protein and prevented the secretion of Wnt5a. Dominant negative CaSR (R185Q) or siRNA blocked the high Ca(2+)-mediated inhibition of the beta-catenin reporter TOPflash. The CaSR/Wnt5a inhibition of beta-catenin reporter was prevented by dominant negative ubiquitin ligase seven in absentia homolog 2 (Siah2). In low-calcium medium, overexpressing Wnt5a increased Siah2 amplicons and protein. Inducing the expression of full-length adenomatous polyposis coli (APC) prevented CaSRmediated increases of Siah2 and Wnt5a. Overexpressing the receptor tyrosine kinase-like orphan receptor 2 (Ror2) increased Wnt5a and CaSR-mediated inhibition of TOPflash. Conditioned medium from Wnt5a-transfected cells added to HT-29 cells in low-Ca(2+) medium inhibited the beta-catenin reporter. This inhibition was blocked dose responsively by Frizzled-8/Fc chimeric antibody. Overexpression of Ror2 in HT-29 cells in low-Ca(2+) medium increased the inhibition of beta-catenin reporter caused by recombinant Wnt5a protein compared with addition of Wnt5a protein alone. Our findings demonstrate that APC status plays a key role as a determinant of Wnt5a secretion and suggest that CaSR-mediated secretion of Wnt5a will inhibit defective Wnt signaling in APC-truncated cells in an autocrine manner.
机译:为了解结肠细胞外钙敏感受体(CaSR)在钙化学保护中预防结肠癌的作用,我们用HT-29细胞(一种腺癌细胞系)上的5 mM Ca(2+)激活了CaSR。高Ca(2+)刺激上调(通过RT-PCR评估)和Wnt5a的分泌(通过Western blot评估),这是一个非经典的Wnt家族成员。用针对CaSR的短干扰RNA(siRNA)双链体抑制CaSR活性可减少CaSR蛋白并阻止Wnt5a的分泌。显性阴性CaSR(R185Q)或siRNA阻止了高Ca(2+)介导的β-catenin报告基因TOPflash的抑制。缺席同源2(Siah2)中的显性负泛素连接酶7阻止了CaSR / Wnt5a对β-catenin报告基因的抑制。在低钙培养基中,过量表达的Wnt5a会增加Siah2扩增子和蛋白质。诱导全长腺瘤性息肉病大肠杆菌(APC)的表达阻止了CaSR介导的Siah2和Wnt5a的增加。过度表达受体酪氨酸激酶样孤儿受体2(Ror2)增加Wnt5a和CaSR介导的TOPflash抑制。从Wnt5a转染的细胞添加到低Ca(2+)培养基中的HT-29细胞的条件培养基抑制了β-catenin报告基因。该抑制被Frizzled-8 / Fc嵌合抗体剂量响应地阻断。与单独添加Wnt5a蛋白相比,在低Ca(2+)培养基中HT-29细胞中Ror2的过表达增加了重组Wnt5a蛋白对β-catenin报告基因的抑制作用。我们的发现表明,APC状态作为Wnt5a分泌的决定因素起着关键作用,并暗示CaSR介导的Wnt5a分泌将以自分泌方式抑制APC截短细胞中的缺陷性Wnt信号传导。

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