P4HA2: A link between tumor-intrinsic hypoxia, partial EMT and collective migration

被引:9
作者
Aggarwal, Vaishali [1 ]
Sahoo, Sarthak [2 ]
Donnenberg, Vera S. [1 ,3 ,4 ,5 ]
Chakraborty, Priyanka [2 ]
Jolly, Mohit Kumar [2 ]
Sant, Shilpa [1 ,3 ,4 ,5 ,6 ,7 ]
机构
[1] Univ Pittsburgh, Sch Pharm, Dept Pharmaceut Sci, Pittsburgh, PA USA
[2] Indian Inst Sci, Ctr Biosyst Sci & Engn, Bangalore, India
[3] Univ Pittsburgh, Sch Med, Dept Cardiothorac Surg, Pittsburgh, PA USA
[4] Univ Pittsburgh, McGowan Inst Regenerat Med, Pittsburgh, PA USA
[5] Univ Pittsburgh, UPMC Hillman Canc Ctr, Pittsburgh, PA USA
[6] Univ Pittsburgh, Swanson Sch Engn, Dept Bioengn, Pittsburgh, PA USA
[7] Univ Pittsburgh, UPMC Hillman Canc Ctr, McGowan Inst Regenerat Med, Sch Pharm,Dept Pharmaceut Sci,Dept Bioengn, 7408 Salk Hall,3501 Terrace St, Pittsburgh, PA 15261 USA
来源
ADVANCES IN CANCER BIOLOGY-METASTASIS | 2022年 / 5卷
关键词
P4HA2; Tumor-intrinsic hypoxia; Partial EMT; Collective migration; 3D microtumor models; Tumor microenvironment; EPITHELIAL-MESENCHYMAL TRANSITION; INCREASED EXPRESSION; GENE-EXPRESSION; CELLS; PROMOTES; MICROENVIRONMENT; METALLOTHIONEIN; METASTASIS; PLASTICITY; GUIDELINES;
D O I
10.1016/j.adcanc.2022.100057
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Epithelial-to-mesenchymal transition (EMT), a well-established phenomenon studied across pan-cancer types, has long been known to be a major player in driving tumor invasion and metastasis. Recent studies have highlighted the importance of partial EMT phenotypes in metastasis. Initially thought as a transitional state between epithelial and mesenchymal phenotypic states, partial EMT state is now widely recognized as a key driver of intra-tumoral heterogeneity and phenotypic plasticity, further accelerating tumor metastasis and therapeutic resistance. However, how tumor microenvironment regulates partial EMT phenotypes remains unclear. We have developed unique size-controlled three-dimensional microtumor models that recapitulate tumorintrinsic hypoxia and the emergence of collectively migrating cells. In this study, we further interrogate these microtumor models to understand how tumor-intrinsic hypoxia regulates partial EMT and collective migration in hypoxic large microtumors fabricated from T47D breast cancer cells. We compared global gene expression profiles of hypoxic, migratory microtumors to that of non-hypoxic, non-migratory microtumors at early and late time-points. Using our microtumor models, we identified unique gene signatures for tumor-intrinsic hypoxia (early versus late), partial EMT and migration (pre-migratory versus migratory phenotype). Through differential gene expression analysis between the microtumor models with an overlap of hypoxia, partial EMT and migration signatures, we identified prolyl 4-hydroxylase subunit 2 (P4HA2), a hypoxia responsive gene, as a central regulator common to hypoxia, partial EMT and collective migration. Further, the inhibition of P4HA2 significantly blocked collective migration in hypoxic microtumors. Thus, using the integrated computationalexperimental analysis, we identify the key role of P4HA2 in tumor-intrinsic hypoxia-driven partial EMT and collective migration.
引用
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页数:11
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