IGF2 and IGF1R identified as novel tip cell genes in primary microvascular endothelial cell monolayers

被引:0
|
作者
Marchien G. Dallinga
Bahar Yetkin-Arik
Richelle P. Kayser
Ilse M. C. Vogels
Patrycja Nowak-Sliwinska
Arjan W. Griffioen
Cornelis J. F. van Noorden
Ingeborg Klaassen
Reinier O. Schlingemann
机构
[1] Amsterdam University Medical Centers,Ocular Angiogenesis Group, Departments of Ophthalmology and Medical Biology
[2] Academic Medical Center,School of Pharmaceutical Sciences
[3] University of Geneva,Angiogenesis Laboratory, Department of Medical Oncology
[4] Amsterdam University Medical Centers,Department of Genetic Toxicology and Cancer Biology
[5] VU University Medical Center,Department of Ophthalmology
[6] National Institute of Biology,Ocular Angiogenesis Group, Department of Medical Biology
[7] University of Lausanne,undefined
[8] Jules-Gonin Eye Hospital,undefined
[9] Fondation Asile des Aveugles,undefined
[10] Amsterdam University Medical Centers,undefined
[11] Academic Medical Center,undefined
来源
Angiogenesis | 2018年 / 21卷
关键词
Angiogenesis; Tip cells; CD34; IGF2; Endothelial cells; Cultured cells; Endothelial growth factors;
D O I
暂无
中图分类号
学科分类号
摘要
Tip cells, the leading cells of angiogenic sprouts, were identified in cultures of human umbilical vein endothelial cells (HUVECs) by using CD34 as a marker. Here, we show that tip cells are also present in primary human microvascular endothelial cells (hMVECs), a more relevant endothelial cell type for angiogenesis. By means of flow cytometry, immunocytochemistry, and qPCR, it is shown that endothelial cell cultures contain a dynamic population of CD34+ cells with many hallmarks of tip cells, including filopodia-like extensions, elevated mRNA levels of known tip cell genes, and responsiveness to stimulation with VEGF and inhibition by DLL4. Furthermore, we demonstrate that our in vitro tip cell model can be exploited to investigate cellular and molecular mechanisms in tip cells and to discover novel targets for anti-angiogenesis therapy in patients. Small interfering RNA (siRNA) was used to knockdown gene expression of the known tip cell genes angiopoietin 2 (ANGPT2) and tyrosine kinase with immunoglobulin-like and EGF-like domains 1 (TIE1), which resulted in similar effects on tip cells and sprouting as compared to inhibition of tip cells in vivo. Finally, we identified two novel tip cell-specific genes in CD34+ tip cells in vitro: insulin-like growth factor 2 (IGF2) and IGF-1-receptor (IGF1R). Knockdown of these genes resulted in a significant decrease in the fraction of tip cells and in the extent of sprouting in vitro and in vivo. In conclusion, this study shows that by using our in vitro tip cell model, two novel essential tip cells genes are identified.
引用
收藏
页码:823 / 836
页数:13
相关论文
共 50 条
  • [21] Russell-Silver syndrome as a phenotype resulting from defects in the IGF1R axis: the ligand IGF2, its receptor IGF1R, or the signaling modulator GRB10.
    Kosaki, K
    Kikuchi, T
    Yoshihashi, H
    Kosaki, R
    Suzuki, T
    Smith, R
    Matsuo, N
    AMERICAN JOURNAL OF HUMAN GENETICS, 2000, 67 (04) : 347 - 347
  • [22] IGF1R and phosphorylated IGF1R in HER2-positive breast cancer.
    Browne, B.
    Crown, J.
    Eustace, A. J.
    Kennedy, S.
    O'Brien, N.
    Larkin, A.
    Ballot, J.
    Mahgoub, T.
    Qadir, Z.
    Sclafani, F.
    Madden, S. F.
    Kennedy, M. J.
    Duffy, M. J.
    O'Donovan, N.
    JOURNAL OF CLINICAL ONCOLOGY, 2011, 29 (15)
  • [23] Defective IGF2 and IGF1R protein production in embryonic pancreas precedes beta cell mass anomaly in the Goto–Kakizaki rat model of type 2 diabetes
    S. Calderari
    M.-N. Gangnerau
    M. Thibault
    M.-J. Meile
    N. Kassis
    C. Alvarez
    B. Portha
    P. Serradas
    Diabetologia, 2007, 50 : 1463 - 1471
  • [24] IGF1R targeted therapy in human osteosarcoma cell lines
    Yang, Jia-Lin
    Kuang, Jonanthan
    Crowe, Philip J.
    BONE, 2008, 43 : S111 - S111
  • [25] Sequential activation of uterine epithelial IGF1R by stromal IGF1 and embryonic IGF2 directs normal uterine preparation for embryo implantation
    Zhou, Chan
    Lv, Meiying
    Wang, Peike
    Guo, Chuanhui
    Ni, Zhangli
    Bao, Haili
    Tang, Yedong
    Cai, Han
    Lu, Jinhua
    Deng, Wenbo
    Yang, Xiaoyu
    Xia, Guoliang
    Wang, Haibin
    Wang, Chao
    Kong, Shuangbo
    JOURNAL OF MOLECULAR CELL BIOLOGY, 2021, 13 (09) : 646 - 661
  • [26] Yak IGF2 Promotes Fibroblast Proliferation Via Suppression of IGF1R and PI3KCG Expression
    Zhang, Quanwei
    Wang, Qi
    Gong, Jishang
    Du, Jiaxing
    Zhang, Yong
    Zhao, Xingxu
    GENES, 2018, 9 (03):
  • [27] IGF2 Autocrine-Mediated IGF1R Activation Is a Clinically Relevant Mechanism of Osimertinib Resistance in Lung Cancer
    Manabe, Tadashi
    Yasuda, Hiroyuki
    Terai, Hideki
    Kagiwada, Harumi
    Hamamoto, Junko
    Ebisudani, Toshiki
    Kobayashi, Keigo
    Masuzawa, Keita
    Ikemura, Shinnosuke
    Kawada, Ichiro
    Hayashi, Yuichiro
    Fukui, Kazuhiko
    Horimoto, Katsuhisa
    Fukunaga, Koichi
    Soejima, Kenzo
    MOLECULAR CANCER RESEARCH, 2020, 18 (04) : 549 - 559
  • [28] Novel Regulation of IGF1R by Ubiquilin1
    Kurlawala, Zimple
    Gosney, Julie
    Ceresa, Brian P.
    Beverly, Levi
    FASEB JOURNAL, 2017, 31
  • [29] Defective IGF2 and IGF1R protein production in embryonic pancreas precedes beta cell mass anomaly in the Goto-Kakizaki rat model of type 2 diabetes
    Calderari, S.
    Gangnerau, M.-N.
    Thibault, M.
    Meile, M.-J.
    Kassis, N.
    Alvarez, C.
    Portha, B.
    Serradas, P.
    DIABETOLOGIA, 2007, 50 (07) : 1463 - 1471