Department of Internal Medicine, Division of Gastroenterology, University of Kentucky, Lexington, KY, USA.
Markey Cancer Center, University of Kentucky, Lexington, KY, USA.
Sci Rep. 2018 Jan 12;8(1):671. doi: 10.1038/s41598-017-18421-8.
Nuclear activation of Wnt/β-catenin signaling is required for cell proliferation in inflammation and cancer. Studies from our group indicate that β-catenin activation in colitis and colorectal cancer (CRC) correlates with increased nuclear levels of β-catenin phosphorylated at serine 552 (pβ-Cat). Biochemical analysis of nuclear extracts from cancer biopsies revealed the existence of low molecular weight (LMW) pβ-Cat, increased to the exclusion of full size (FS) forms of β-catenin. LMW β-catenin lacks both termini, leaving residues in the armadillo repeat intact. Further experiments showed that TCF4 predominantly binds LMW pβ-Cat in the nucleus of inflamed and cancerous cells. Nuclear chromatin bound localization of LMW pβ-Cat was blocked in cells by inhibition of proteasomal chymotrypsin-like activity but not by other protease inhibitors. K48 polyubiquitinated FS and LMW β-catenin were increased by treatment with bortezomib. Overexpressed in vitro double truncated β-catenin increased transcriptional activity, cell proliferation and growth of tumor xenografts compared to FS β-catenin. Serine 552-> alanin substitution abrogated K48 polyubiquitination, β-catenin nuclear translocation and tumor xenograft growth. These data suggest that a novel proteasome-dependent posttranslational modification of β-catenin enhances transcriptional activation. Discovery of this pathway may be helpful in the development of diagnostic and therapeutic tools in colitis and cancer.
核激活 Wnt/β-catenin 信号通路是炎症和癌症中细胞增殖所必需的。我们小组的研究表明,结肠炎和结直肠癌(CRC)中β-catenin 的激活与核内β-catenin 丝氨酸 552 磷酸化(pβ-Cat)水平的增加相关。对来自癌症活检的核提取物的生化分析表明存在低分子量(LMW)pβ-Cat,其增加排除了β-catenin 的全长(FS)形式。LMW β-catenin 缺乏两端,使卷曲螺旋重复区的残基保持完整。进一步的实验表明,TCF4 主要在炎症和癌变细胞的核内结合 LMW pβ-Cat。通过抑制蛋白酶体糜蛋白酶样活性而不是其他蛋白酶抑制剂,可阻断核染色质结合的 LMW pβ-Cat 在细胞中的定位。用硼替佐米处理可增加 K48 多聚泛素化的 FS 和 LMW β-catenin。与 FS β-catenin 相比,体外过表达的双截断 β-catenin 增加了转录活性、细胞增殖和肿瘤异种移植物的生长。丝氨酸 552->丙氨酸取代可消除 K48 多聚泛素化、β-catenin 核易位和肿瘤异种移植物生长。这些数据表明,β-catenin 的一种新型蛋白酶体依赖性翻译后修饰增强了转录激活。该途径的发现可能有助于在结肠炎和癌症中开发诊断和治疗工具。