VEGFR-3 signaling is regulated by a G-protein activator, activator of G-protein signaling 8, in lymphatic endothelial cells

被引:10
|
作者
Sakima, Miho [1 ,2 ]
Hayashi, Hisaki [1 ]
Al Mamun, Abdullah [1 ,3 ]
Sato, Motohiko [1 ]
机构
[1] Aichi Med Univ, Dept Physiol, Nagakute, Aichi, Japan
[2] Shubun Univ, Dept Hlth & Nutr, Ichinomiya, Aichi, Japan
[3] Mawlana Bhashani Sci & Technol Univ, Dept Biochem & Mol Biol, Santosh 1902, Tangail, Bangladesh
基金
日本学术振兴会;
关键词
VEGFR-3; AGS8; G-protein; Lymphangiogenesis; RECEPTOR-INDEPENDENT ACTIVATOR; GROWTH-FACTOR-C; HEREDITARY LYMPHEDEMA; COLORECTAL-CANCER; TYROSINE KINASE; MOUSE EMBRYOS; LYMPHANGIOGENESIS; MECHANISMS; GENE; PHOSPHORYLATION;
D O I
10.1016/j.yexcr.2018.04.007
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Vascular endothelial growth factor C (VEGFC) and its cognate receptor VEGFR-3 play a key role in lymphangiogenesis. We previously reported that an ischemia-inducible G beta gamma signal regulator, activator of G-protein signaling 8 (AGS8), regulated the subcellular distribution of vascular endothelial growth factor receptor-2 (VEGFR-2) and influenced VEGFA-induced signaling in vascular endothelial cells. Here, we report that AGS8 regulates VEGFR-3, which is another subtype of the VEGF receptor family, and mediates VEGFC signaling in human dermal lymphatic endothelial cells (HDLECs). VEGFC stimulated the proliferation of HDLECs and tube formation by HDLECs, which were inhibited by knocking down AGS8 by small interfering RNA (siRNA). AGS8 siRNA inhibited VEGFC-mediated phosphorylation of VEGFR-3 and its downstream molecules, including ERK1/2 and AKT. Analysis of fluorescence-activated cell sorting and immunofluorescence staining demonstrated that AGS8 knockdown was associated with a reduction of VEGFR-3 at the cell surface. Endocytosis inhibitors did not rescue the decrease of cell-surface VEGFR-3, suggesting that AGS8 regulated the trafficking of VEGFR-3 to the plasma membrane. An immunoprecipitation assay indicated that VEGFR-3 formed a complex including AGS8 and Gf3y in cells. These data suggest the novel regulation of VEGFC-VEGFR-3 by AGS8 in HDLECs and a potential role for AGS8 in lymphangiogenesis.
引用
收藏
页码:13 / 23
页数:11
相关论文
共 50 条
  • [21] Human platelet pathology related to defects in the G-protein signaling cascade
    Van Geet, C.
    Izzi, B.
    Labarque, V.
    Freson, K.
    JOURNAL OF THROMBOSIS AND HAEMOSTASIS, 2009, 7 : 282 - 286
  • [22] Alterations in phosphoinositide signaling and G-protein levels in depressed suicide brain
    Pacheco, MA
    Stockmeier, C
    Meltzer, HY
    Overholser, JC
    Dilley, GE
    Jope, RS
    BRAIN RESEARCH, 1996, 723 (1-2) : 37 - 45
  • [23] G-protein and cAMP-mediated signaling in aspergilli: A genomic perspective
    Lafon, Anne
    Han, Kap-Hoon
    Seo, Jeong-Ah
    yu, Jae-Hk Yu
    d'Enfert, Christophe
    FUNGAL GENETICS AND BIOLOGY, 2006, 43 (07) : 490 - 502
  • [24] Prognostic value of regulator of G-protein signaling 6 in colorectal cancer
    Luo, Yang
    Qin, Shao-Lan
    Yu, Min-Hao
    Mu, Yi-Fei
    Wang, Zheng-Shi
    Zhong, Ming
    BIOMEDICINE & PHARMACOTHERAPY, 2015, 76 : 147 - 152
  • [25] BETHANECHOL AND A G-PROTEIN ACTIVATOR, NAF/ALCL3, INDUCE SECRETORY RESPONSE IN PANETH CELLS OF MOUSE INTESTINE
    SATOH, Y
    ISHIKAWA, K
    OOMORI, Y
    TAKEDA, S
    ONO, K
    CELL AND TISSUE RESEARCH, 1992, 269 (02) : 213 - 220
  • [26] Extended Human G-Protein Coupled Receptor Network: Cell-Type-Specific Analysis of G-Protein Coupled Receptor Signaling Pathways
    Apostolakou, Avgi E.
    Baltoumas, Fotis A.
    Stravopodis, Dimitrios J.
    Iconomidou, Vassiliki A.
    JOURNAL OF PROTEOME RESEARCH, 2020, 19 (01) : 511 - 524
  • [27] G-protein βγ subunits as multi-functional scaffolds and transducers in G-protein-coupled receptor signaling
    Smrcka, Alan V.
    Fisher, Isaac
    CELLULAR AND MOLECULAR LIFE SCIENCES, 2019, 76 (22) : 4447 - 4459
  • [28] Ras/MAPK Signaling Modulates VEGFR-3 Expression through Ets-Mediated p300 Recruitment and Histone Acetylation on the Vegfr3 Gene in Lymphatic Endothelial Cells
    Ichise, Taeko
    Yoshida, Nobuaki
    Ichise, Hirotake
    PLOS ONE, 2012, 7 (12):
  • [29] G-protein βγ subunits as multi-functional scaffolds and transducers in G-protein-coupled receptor signaling
    Alan V. Smrcka
    Isaac Fisher
    Cellular and Molecular Life Sciences, 2019, 76 : 4447 - 4459
  • [30] G-Protein G alpha(s) controls medulloblastoma initiation by suppressing sonic hedgehog signaling
    He, Xuelian
    Lu, Q. Richard
    MOLECULAR & CELLULAR ONCOLOGY, 2015, 2 (02):