Survivin as a mediator of stiffness-induced cell cycle progression and proliferation of vascular smooth muscle cells

被引:2
|
作者
Biber, John C. [1 ]
Sullivan, Andra [2 ]
Brazzo, Joseph A. [1 ]
Heo, Yuna [1 ,2 ]
Tumenbayar, Bat-Ider [3 ]
Krajnik, Amanda [1 ]
Poppenberg, Kerry E. [4 ,5 ]
Tutino, Vincent M. [1 ,2 ,4 ,5 ]
Heo, Su-Jin [6 ]
Kolega, John [1 ]
Lee, Kwonmoo [7 ]
Bae, Yongho [1 ,2 ]
机构
[1] Univ Buffalo, Jacobs Sch Med & Biomed Sci, Dept Pathol & Anat Sci, Buffalo, NY 14203 USA
[2] Univ Buffalo, Sch Engn & Appl Sci, Dept Biomed Engn, Buffalo, NY 14260 USA
[3] Univ Buffalo, Jacobs Sch Med & Biomed Sci, Dept Pharmacol & Toxicol, Buffalo, NY 14203 USA
[4] Univ Buffalo, Canon Stroke & Vasc Res Ctr, Buffalo, NY 14203 USA
[5] Univ Buffalo, Jacobs Sch Med & Biomed Sci, Dept Neurosurg, Buffalo, NY 14203 USA
[6] Univ Penn, Perelman Sch Med, Dept Orthoped Surg, Philadelphia, PA 19104 USA
[7] Boston Childrens Hosp, Vasc Biol Program, Boston, MA 02115 USA
关键词
ARTERIAL STIFFNESS; MOLECULAR REGULATION; APOPTOSIS PROTEIN; GENE-EXPRESSION; ACTIVATION; CANCER; INJURY; DIFFERENTIATION; CONTRIBUTES; RESISTANCE;
D O I
10.1063/5.0150532
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Stiffened arteries are a pathology of atherosclerosis, hypertension, and coronary artery disease and a key risk factor for cardiovascular disease events. The increased stiffness of arteries triggers a phenotypic switch, hypermigration, and hyperproliferation of vascular smooth muscle cells (VSMCs), leading to neointimal hyperplasia and accelerated neointima formation. However, the mechanism underlying this trigger remains unknown. Our analyses of whole-transcriptome microarray data from mouse VSMCs cultured on stiff hydrogels simulating arterial pathology identified 623 genes that were significantly and differentially expressed (360 upregulated and 263 downregulated) relative to expression in VSMCs cultured on soft hydrogels. Functional enrichment and gene network analyses revealed that these stiffness-sensitive genes are linked to cell cycle progression and proliferation. Importantly, we found that survivin, an inhibitor of apoptosis protein, mediates stiffness-dependent cell cycle progression and proliferation as determined by gene network and pathway analyses, RT-qPCR, immunoblotting, and cell proliferation assays. Furthermore, we found that inhibition of cell cycle progression did not reduce survivin expression, suggesting that survivin functions as an upstream regulator of cell cycle progression and proliferation in response to ECM stiffness. Mechanistically, we found that the stiffness signal is mechanotransduced via the FAK-E2F1 signaling axis to regulate survivin expression, establishing a regulatory pathway for how the stiffness of the cellular microenvironment affects VSMC behaviors. Overall, our findings indicate that survivin is necessary for VSMC cycling and proliferation and plays a role in regulating stiffness-responsive phenotypes.
引用
收藏
页数:13
相关论文
共 50 条
  • [1] Survivin regulates intracellular stiffness and extracellular matrix production in vascular smooth muscle cells
    Krajnik, Amanda
    Nimmer, Erik
    Brazzo III, Joseph A.
    Biber, John C.
    Drewes, Rhonda
    Tumenbayar, Bat-Ider
    Sullivan, Andra
    Pham, Khanh
    Krug, Alanna
    Heo, Yuna
    Kolega, John
    Heo, Su-Jin
    Lee, Kwonmoo
    Weil, Brian R.
    Kim, Deok-Ho
    Gupte, Sachin A.
    Bae, Yongho
    APL BIOENGINEERING, 2023, 7 (04)
  • [2] Cell cycle regulator geminin is dispensable for the proliferation of vascular smooth muscle cells
    Guo JianQiang
    Sun NingLing
    SCIENCE CHINA-LIFE SCIENCES, 2013, 56 (08) : 731 - 738
  • [3] Cytokine regulation of apoptosis-induced apoptosis and apoptosis-induced cell proliferation in vascular smooth muscle cells
    Aravani, Dimitra
    Foote, Kirsty
    Figg, Nichola
    Finigan, Alison
    Uryga, Anna
    Clarke, Murray
    Bennett, Martin
    APOPTOSIS, 2020, 25 (9-10) : 648 - 662
  • [4] Ceramide 1-phosphate induces neointimal formation via cell proliferation and cell cycle progression upstream of ERK1/2 in vascular smooth muscle cells
    Kim, Tack-Joong
    Kang, Yeo-Jin
    Lim, Yong
    Lee, Hyoung-Woo
    Bae, Kiho
    Lee, Youn-Sun
    Yoo, Jae-Myung
    Yoo, Hwan-Soo
    Yun, Yeo-Pyo
    EXPERIMENTAL CELL RESEARCH, 2011, 317 (14) : 2041 - 2051
  • [5] Bisdemethoxycurcumin inhibits PDGF-induced vascular smooth muscle cell motility and proliferation
    Hua, Yinan
    Dolence, Julia
    Ramanan, Shalini
    Ren, Jun
    Nair, Sreejayan
    MOLECULAR NUTRITION & FOOD RESEARCH, 2013, 57 (09) : 1611 - 1618
  • [6] Extracellular Matrix Collagen Alters Cell Proliferation and Cell Cycle Progression of Human Uterine Leiomyoma Smooth Muscle Cells
    Koohestani, Faezeh
    Braundmeier, Andrea G.
    Mahdian, Arash
    Seo, Jane
    Bi, JiaJia
    Nowak, Romana A.
    PLOS ONE, 2013, 8 (09):
  • [7] Cholesterol Esterification as a Mediator of Proliferation of Vascular Smooth Muscle Cells and Peripheral Blood Mononuclear Cells during Atherogenesis
    Mulas, Maria Franca
    Maxia, Antonio
    Dessi, Sandra
    Mandas, Antonella
    JOURNAL OF VASCULAR RESEARCH, 2014, 51 (01) : 14 - 26
  • [8] Rutaecarpine Inhibits Angiotensin Ⅱ-Induced Proliferation in Rat Vascular Smooth Muscle Cells
    李艳菊
    张锋
    龚其海
    吴芹
    余丽梅
    孙安盛
    Chinese Journal of Integrative Medicine, 2014, (09) : 682 - 687
  • [9] Proliferation of human primary vascular smooth muscle cells depends on serum response factor
    Werth, Daniela
    Grassi, Gabriele
    Konjer, Nina
    Dapas, Barbara
    Farra, Rossella
    Giansante, Carlo
    Kandolf, Reinhard
    Guarnieri, Gianfranco
    Nordheim, Alfred
    Heidenreich, Olaf
    EUROPEAN JOURNAL OF CELL BIOLOGY, 2010, 89 (2-3) : 216 - 224
  • [10] Trichostatin A enhances proliferation and migration of vascular smooth muscle cells by downregulating thioredoxin 1
    Song, Seungjeong
    Kang, Sang Won
    Choi, Chulhee
    CARDIOVASCULAR RESEARCH, 2010, 85 (01) : 241 - 249