Ahmed Syed Feroj, Das Nilanjana, Sarkar Moumita, Chatterjee Uttara, Chatterjee Sandip, Ghosh Mrinal Kanti
Signal Transduction in Cancer and Stem Cells Laboratory, Department of Cancer Biology and Inflammatory Disorder, Council of Scientific and Industrial Research-Indian Institute of Chemical Biology (CSIR-IICB), Kolkata, West Bengal, India.
Division of Pathology, Park Clinic, Kolkata, West Bengal, India.
Mol Ther. 2015 Feb;23(2):255-69. doi: 10.1038/mt.2014.202. Epub 2014 Oct 20.
PTEN mutation is a frequent feature across a plethora of human cancers, the hot-spot being its C-terminus (PTEN-CT) regulatory domain resulting in a much diminished protein expression. In this study, the presence of C-terminus mutations was confirmed through sequencing of different human tumor samples. The kinase CKII-mediated phosphorylation of PTEN at these sites makes it a loopy structure competing with the E3 ligases for binding to its lipid anchoring C2 domain. Accordingly, it was found that PTEN-CT expressing stable cell lines could inhibit tumorigenesis in syngenic breast tumor models. Therefore, we designed a novel exosome-mediated delivery of the intrinsic PTEN domain, PTEN-CT into different cancer cells and observed reduced proliferation, migration, and colony forming ability. The delivery of exosome containing PTEN-CT to breast tumor mice model was found to result in significant regression in tumor size with the tumor sections showing increased apoptosis. Here, we also report for the first time an active PTEN when its C2 domain is bound by PTEN-CT, probably rendering its anti-tumorigenic activities through the protein phosphatase activity. Therefore, therapeutic interventions that focus on PTEN E3 ligase inhibition through exosome-mediated PTEN-CT delivery can be a probable route in treating cancers with low PTEN expression.
PTEN突变是多种人类癌症的常见特征,热点在于其C端(PTEN-CT)调节域,这导致蛋白质表达大幅降低。在本研究中,通过对不同人类肿瘤样本进行测序,证实了C端突变的存在。激酶CKII在这些位点介导的PTEN磷酸化使其形成一种环状结构,与E3连接酶竞争结合其脂质锚定C2结构域。相应地,发现表达PTEN-CT的稳定细胞系可在同基因乳腺肿瘤模型中抑制肿瘤发生。因此,我们设计了一种新型的外泌体介导的内在PTEN结构域PTEN-CT递送至不同癌细胞的方法,并观察到细胞增殖、迁移和集落形成能力降低。将含有PTEN-CT的外泌体递送至乳腺肿瘤小鼠模型中,发现肿瘤大小显著缩小,肿瘤切片显示凋亡增加。在此,我们还首次报道当PTEN的C2结构域与PTEN-CT结合时,PTEN具有活性,可能通过蛋白磷酸酶活性发挥其抗肿瘤活性。因此,通过外泌体介导的PTEN-CT递送专注于抑制PTEN E3连接酶的治疗干预可能是治疗PTEN表达低的癌症的一条可行途径。