胆固醇和CDON调节胰腺癌细胞中Sonic Hedgehog的释放。

Journal of Pancreatic Cancer Pub Date : 2021-06-01 eCollection Date: 2021-01-01 DOI:10.1089/pancan.2021.0002
Jennifer I Alexander, Esteban Martinez, Alberto Vargas, Daniel Zinshteyn, Valerie Sodi, Denise C Connolly, Tiffiney R Hartman, Alana M O'Reilly
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摘要

背景:Sonic Hedgehog (Shh)是一种受严格调控的膜相关形态原,是胰腺导管腺癌(PDAC)中肿瘤发生的已知驱动因素。加工后,Shh停留在产生Shh的细胞的质膜上,从而限制了其分布和信号强度。在PDAC中,从肿瘤细胞中释放Shh对于促进肿瘤允许的微环境是必要的。调节Shh从肿瘤细胞隔离和/或释放到远处基质细胞信号的机制尚不清楚。之前,我们的实验室证明了果蝇跨膜蛋白Boi,将Hh隔离在Hh产生细胞的膜上。在饮食胆固醇或缺乏boi的情况下,Hh被组成性地释放以促进远端细胞的增殖。在这项研究中,我们通过探索人类boi同源基因CDON在PDAC中的作用来研究这一机制在哺乳动物中的保守性。方法:利用PDAC细胞系BxPC-3、Capan-2和MIA PaCa-2,以及正常胰腺上皮细胞(PDEC),通过免疫印迹和实时定量聚合酶链反应,以及酶联免疫分析法,在胆固醇处理和/或转染RNA干扰以降低CDON表达或转染人CDON以增加表达后,研究Shh的表达。结果:与我们的Boi模型一致,CDON抑制Shh的释放,这在饮食胆固醇的反应中得到缓解。然而,在一些PDAC环境下,过表达CDON会抑制胆固醇介导的Shh释放,这可能与细胞的突变负担有关。结论:确定抑制或刺激肿瘤细胞膜Shh释放的机制可能为减少肿瘤与周围环境之间的信号传导提供新的途径,从而抑制肿瘤的发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Cholesterol and CDON Regulate Sonic Hedgehog Release from Pancreatic Cancer Cells.

Cholesterol and CDON Regulate Sonic Hedgehog Release from Pancreatic Cancer Cells.

Cholesterol and CDON Regulate Sonic Hedgehog Release from Pancreatic Cancer Cells.

Cholesterol and CDON Regulate Sonic Hedgehog Release from Pancreatic Cancer Cells.

Background: Sonic Hedgehog (Shh) is a tightly regulated membrane-associated morphogen and a known driver of tumorigenesis in pancreatic ductal adenocarcinoma (PDAC). After processing, Shh remains at the plasma membrane of Shh producing cells, thereby limiting its distribution and signal strength. In PDAC, the release of Shh from tumor cells is necessary to promote a tumor-permissive microenvironment. Mechanisms regulating Shh sequestration and/or release from tumor cells to signal distant stromal cells are not well known. Previously, our laboratory demonstrated that the Drosophila transmembrane protein Boi, sequesters Hh at the membrane of Hh-producing cells. In response to dietary cholesterol or in the absence of boi, Hh is constitutively released to promote proliferation in distant cells. In this study, we investigated the conservation of this mechanism in mammals by exploring the role of the human boi homolog, CDON, in PDAC. Methods: Using PDAC cell-lines BxPC-3, Capan-2, and MIA PaCa-2, along with normal pancreatic epithelial cells (PDEC), we investigated Shh expression via Immunoblot and real-time, quantitative polymerase chain reaction in addition to Shh release via enzyme-linked immunoassay following cholesterol treatment and/or transfection with either RNA interference to reduce CDON expression or with human CDON to increase expression. Results: Consistent with our Boi model, CDON suppresses Shh release, which is alleviated in response to dietary cholesterol. However, over-expressing CDON suppresses cholesterol-mediated Shh release in some PDAC contexts, which may be relative to the mutational burden of the cells. Conclusion: Identifying mechanisms that either sequester or stimulate Shh release from the tumor cell membrane may provide new avenues to reduce signaling between the tumor and its surrounding environment, which may restrain tumor development.

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