Literature DB >> 27561928

Secreted Protein Acidic and Rich in Cysteine Modulates Molecular Arterial Homeostasis of Human Arterial Smooth Muscle Cells In Vitro.

Geng-Fan Ye1, Shao-Wei Zhu2, Shu-Gan Zhu1, Feng Li3, Yun-Yan Wang4.   

Abstract

Secreted protein acidic and rich in cysteine (SPARC) is widely expressed in the vascular smooth muscle cells (VSMCs) of human intracranial aneurysms (IAs), but the effect and underlying mechanism of SPARC on VSMCs during the formation and progression of IAs needs to be probed. Human umbilical arterial smooth muscle cells (HUASMCs) were treated with a gradient concentrations of SPARC in vitro for different time. Cell counting kit-8 (CCK-8) assay, cell cycle, and cell apoptosis were used to investigate the effect of SPARC on HUASMCs. After exposure to 2 and 4 μg/ml SPARC, cell viability were 89.3 ± 2.00 %, and 87.57 ± 2.17 % (P < 0.05 vs. control), respectively. Induced by 2 μg/ml SPARC, the proportion of cells in G0/G1 phase was 74.77 ± 1.33 % (P < 0.05 vs. control), and the early and late apoptosis ratio were 7.38 ± 1.25 % and 4.86 ± 0.81 % (P < 0.01 vs. control), respectively. After exposure to 2 μg/ml SPARC for 2, 6, 12, 24, and 48 h, Western blot analysis showed that the protein level of p21 was upregulated significantly at 2-12 h (P < 0.05 vs. control), while the expression of p53 remained stable within 48 h. The expression of Bax protein increased markedly and peaked at 24 (P < 0.01 vs. control), while Bcl2 protein decreased significantly at 48 h (P < 0.01 vs. control). Cleaved caspase3 was also upregulated dramatically and peaked at 24 h (P < 0.05 vs. control). The protein level of MMP2 increased significantly and peaked at 24 h (P < 0.01 vs. control), while TIMP2 remained stable and even reduced at 48 h (P < 0.05 vs. control). Taken together, SPARC could arrest HUASMCs in G0/G1 phase by overexpression of p21 and induce mitochondria-mediated apoptosis in vitro, which could result in the decreased cell viability. Besides, SPARC might also lead to the activation of MMP2 instead of MMP9. These results indicated SPARC could reduce the self-repair capability and increase injury of media layer and internal elastic lamina of intracranial artery, which would disrupt the normal homeostatic mechanism controlling vascular repair, thus promoting the formation and progression of IAs.

Entities:  

Keywords:  Apoptosis; Arterial homeostasis; Cell cycle; HUASMCs; IAs; MMPs; SPARC

Mesh:

Substances:

Year:  2016        PMID: 27561928     DOI: 10.1007/s12031-016-0827-3

Source DB:  PubMed          Journal:  J Mol Neurosci        ISSN: 0895-8696            Impact factor:   3.444


  29 in total

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Journal:  FASEB J       Date:  1994-02       Impact factor: 5.191

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Authors:  W I Schievink
Journal:  Neurosurgery       Date:  1997-04       Impact factor: 4.654

8.  The p53/p21Cip1/ Waf1 pathway mediates the effects of SPARC on melanoma cell cycle progression.

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Journal:  Pigment Cell Melanoma Res       Date:  2010-11-17       Impact factor: 4.693

9.  Bone-related genes expressed in advanced malignancies induce invasion and metastasis in a genetically defined human cancer model.

Authors:  Jeremy N Rich; Qing Shi; Mark Hjelmeland; Thomas J Cummings; Chien-Tsun Kuan; Darell D Bigner; Christopher M Counter; Xiao-Fan Wang
Journal:  J Biol Chem       Date:  2003-02-17       Impact factor: 5.157

10.  Single-cell RNA sequencing identifies extracellular matrix gene expression by pancreatic circulating tumor cells.

Authors:  David T Ting; Ben S Wittner; Matteo Ligorio; Nicole Vincent Jordan; Ajay M Shah; David T Miyamoto; Nicola Aceto; Francesca Bersani; Brian W Brannigan; Kristina Xega; Jordan C Ciciliano; Huili Zhu; Olivia C MacKenzie; Julie Trautwein; Kshitij S Arora; Mohammad Shahid; Haley L Ellis; Na Qu; Nabeel Bardeesy; Miguel N Rivera; Vikram Deshpande; Cristina R Ferrone; Ravi Kapur; Sridhar Ramaswamy; Toshi Shioda; Mehmet Toner; Shyamala Maheswaran; Daniel A Haber
Journal:  Cell Rep       Date:  2014-09-18       Impact factor: 9.423

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  1 in total

1.  Induction of SPARC on Oxidative Stress, Inflammatory Phenotype Transformation, and Apoptosis of Human Brain Smooth Muscle Cells Via TGF-β1-NOX4 Pathway.

Authors:  Xianjun Tan; Tao Li; Shaowei Zhu; Weiying Zhong; Feng Li; Yunyan Wang
Journal:  J Mol Neurosci       Date:  2020-06-03       Impact factor: 3.444

  1 in total

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