Department of Thyroid and Breast Surgery, The First Affiliated Hospital of Wenzhou Medical University, Wenzhou 325000, China.
Acta Biochim Biophys Sin (Shanghai). 2021 Mar 26;53(4):481-491. doi: 10.1093/abbs/gmab016.
In recent decades, the incidence of thyroid cancer (TC) has rapidly increased, leading us to explore the complex underlying mechanisms. We identified the gene Phospholipase C Delta 3 (PLCD3) as a potential oncogene in TC by conducting the whole transcriptome sequencing. Our study is to understand the oncogenic role of PLCD3 in TC. We verified the overexpression of PLCD3 in TC from The Cancer Genome Atlas, Gene Expression Omnibus databases, and a locally validated cohort. Clinical correlation analysis showed that PLCD3 expression was related to histological type, T stage, lymph node metastasis (LNM), and disease stage. The high expression of PLCD3 could be a distinguishing factor for TC and its LNM. The biological function was examined using small interfering RNA-transfected TC cell lines. Silenced PLCD3 could inhibit colony formation, migration, and invasion ability and promote apoptosis of TC cell lines. PLCD3 silencing reversed the epithelial-mesenchymal transition but induced the apoptotic progress. Further exploration revealed that PLCD3 might be associated with critical genes of the Hippo pathway. The expressions of RHOA, YAP1/TAZ, and their downstream targets were decreased significantly when PLCD3 was down-regulated. YAP1 overexpression rescued the tumor-suppressive effect caused by PLCD3 silencing. This study demonstrates that PLCD3 is an oncogene that supports tumorigenesis and progression in TC, and PLCD3 may be a potential target gene for TC treatment.
在最近几十年,甲状腺癌 (TC) 的发病率迅速增加,促使我们探索其复杂的潜在机制。我们通过进行全转录组测序,发现磷脂酶 C Delta 3 (PLCD3) 基因是 TC 中的一个潜在致癌基因。我们的研究旨在了解 PLCD3 在 TC 中的致癌作用。我们从癌症基因组图谱 (The Cancer Genome Atlas)、基因表达综合数据库 (Gene Expression Omnibus databases) 和本地验证队列中验证了 TC 中 PLCD3 的过表达。临床相关性分析表明,PLCD3 的表达与组织学类型、T 分期、淋巴结转移 (LNM) 和疾病分期有关。PLCD3 的高表达可能是 TC 及其 LNM 的鉴别因素。我们使用小干扰 RNA 转染的 TC 细胞系来检验其生物学功能。沉默 PLCD3 可以抑制 TC 细胞系的集落形成、迁移和侵袭能力,并促进其凋亡。PLCD3 的沉默逆转了上皮-间充质转化,但诱导了凋亡进程。进一步探索发现,PLCD3 可能与 Hippo 通路的关键基因有关。当 PLCD3 下调时,RHOA、YAP1/TAZ 及其下游靶基因的表达显著降低。YAP1 的过表达挽救了 PLCD3 沉默引起的肿瘤抑制作用。这项研究表明,PLCD3 是一种支持 TC 肿瘤发生和进展的致癌基因,PLCD3 可能是 TC 治疗的潜在靶基因。