Literature DB >> 27527361

Roles of integrin β3 cytoplasmic tail in bidirectional signal transduction in a trans-dominant inhibition model.

Jiansong Huang1,2, Yulan Zhou1,3, Xiaoyu Su1, Yuanjing Lyu1, Lanlan Tao1, Xiaofeng Shi1,4, Ping Liu1,5, Zhangbiao Long1,6, Zheng Ruan1, Bing Xiao1, Wenda Xi7, Quansheng Zhou8, Jianhua Mao9, Xiaodong Xi10,11.   

Abstract

We evaluated the roles of calpain cleavage-related mutations of the integrin β3 cytoplasmic tail in integrin αIIbβ3 bidirectional signaling using a trans-dominant inhibition model. Chimeric Tac-β3 proteins (i.e., Tac-β3, Tac-β3Δ741, Tac-β3Δ747, Tac-β3Δ754, Tac-β3Δ759, and Tac-β3ΔNITY) consisting of the extracellular and transmembrane domains of human IL-2 receptor (Tac) and the human integrin β3 cytoplasmic domain were stably expressed in the 123 CHO cells harboring human glycoprotein Ib-IX and wild-type integrin αIIbβ3. The different cells were assayed for stable adhesion and spreading on immobilized fibrinogen, and for binding soluble fibrinogen representing outside-in and inside-out signaling events, respectively. The chimeric protein Tac-β3 inhibited, and Tac-β3ΔNITY partially attenuated stable adhesion and spreading. Tac-β3, Tac-β3Δ759, Tac-β3ΔNITY, and Tac-β3Δ754, but not Tac-β3Δ747 or Tac-β3Δ741, impaired the soluble fibrinogen binding. Results indicated that the bidirectional signaling was significantly inhibited by Tac-β3 and Tac-β3ΔNITY, albeit to a much lesser extent. Moreover, only inside-out signaling was impaired in the 123/Tac-β3Δ759 and 123/Tac-β3Δ754 cells in contrast to an intact bidirectional signaling in the 123/Tac-β3Δ747 and 123/Tac-β3Δ741 cells. In conclusion, the calpain cleavage of integrin β3 resulted in the regulatory effects on signaling by interrupting its interaction with cytoplasmic proteins rather than altering its conformation, and may thus regulate platelet function.

Entities:  

Keywords:  integrin β3; signal transduction; trans-dominant inhibition model

Mesh:

Substances:

Year:  2016        PMID: 27527361     DOI: 10.1007/s11684-016-0460-0

Source DB:  PubMed          Journal:  Front Med        ISSN: 2095-0217            Impact factor:   4.592


  40 in total

1.  Activation of integrin alphaIIbbeta3 by modulation of transmembrane helix associations.

Authors:  Renhao Li; Neal Mitra; Holly Gratkowski; Gaston Vilaire; Rustem Litvinov; Chandrasekaran Nagasami; John W Weisel; James D Lear; William F DeGrado; Joel S Bennett
Journal:  Science       Date:  2003-05-02       Impact factor: 47.728

Review 2.  Platelet integrin alpha(IIb)beta(3): activation mechanisms.

Authors:  Y-Q Ma; J Qin; E F Plow
Journal:  J Thromb Haemost       Date:  2007-07       Impact factor: 5.824

Review 3.  The tail of integrins, talin, and kindlins.

Authors:  Markus Moser; Kyle R Legate; Roy Zent; Reinhard Fässler
Journal:  Science       Date:  2009-05-15       Impact factor: 47.728

4.  The Tyrosine Kinase c-Src Specifically Binds to the Active Integrin αIIbβ3 to Initiate Outside-in Signaling in Platelets.

Authors:  Yibing Wu; Lisa M Span; Patrik Nygren; Hua Zhu; David T Moore; Hong Cheng; Heinrich Roder; William F DeGrado; Joel S Bennett
Journal:  J Biol Chem       Date:  2015-05-06       Impact factor: 5.157

5.  "Inside-out" signal transduction inhibited by isolated integrin cytoplasmic domains.

Authors:  Y P Chen; T E O'Toole; T Shipley; J Forsyth; S E LaFlamme; K M Yamada; S J Shattil; M H Ginsberg
Journal:  J Biol Chem       Date:  1994-07-15       Impact factor: 5.157

6.  Targeted gene inactivation reveals a functional role of calpain-1 in platelet spreading.

Authors:  S M Kuchay; A J Wieschhaus; M Marinkovic; I M Herman; A H Chishti
Journal:  J Thromb Haemost       Date:  2012-06       Impact factor: 5.824

7.  Tyrosine phosphorylation of integrin beta3 regulates kindlin-2 binding and integrin activation.

Authors:  Kamila Bledzka; Katarzyna Bialkowska; Huiqin Nie; Jun Qin; Tatiana Byzova; Chuanyue Wu; Edward F Plow; Yan-Qing Ma
Journal:  J Biol Chem       Date:  2010-08-11       Impact factor: 5.157

8.  Double knockouts reveal that protein tyrosine phosphatase 1B is a physiological target of calpain-1 in platelets.

Authors:  Shafi M Kuchay; Nayoung Kim; Elizabeth A Grunz; William P Fay; Athar H Chishti
Journal:  Mol Cell Biol       Date:  2007-06-18       Impact factor: 4.272

Review 9.  Integrin activation.

Authors:  Mark H Ginsberg
Journal:  BMB Rep       Date:  2014-12       Impact factor: 4.778

10.  Evaluation of targeting c-Src by the RGT-containing peptide as a novel antithrombotic strategy.

Authors:  Jiansong Huang; Xiaofeng Shi; Wenda Xi; Ping Liu; Zhangbiao Long; Xiaodong Xi
Journal:  J Hematol Oncol       Date:  2015-05-30       Impact factor: 17.388

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  1 in total

Review 1.  Regulation of Dynamic Cell Adhesion by Integrin-Integrin Crosstalk.

Authors:  Carl G Gahmberg; Mikaela Grönholm; Sudarrshan Madhavan
Journal:  Cells       Date:  2022-05-19       Impact factor: 7.666

  1 in total

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