Turning Platelets Off and On: Role of RhoGAPs and RhoGEFs in Platelet Activity

被引:14
作者
Comer, Shane P. [1 ,2 ]
机构
[1] Univ Coll Dublin, UCD Conway Inst, ConwaySPHERE Res Grp, Dublin, Ireland
[2] Univ Coll Dublin, Sch Biomol & Biomed Sci, Dublin, Ireland
关键词
platelets; signalling; Rho GTPases; GTPase activating protein (GAP); guanine nucleotide exchange factor (GEF); GTPASE-ACTIVATING PROTEIN; NUCLEOTIDE EXCHANGE FACTOR; RHO GTPASES; THROMBUS FORMATION; GRANULE SECRETION; MYOSIN-IXB; FAMILY; AGGREGATION; KINASES; GEFS;
D O I
10.3389/fcvm.2021.820945
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Platelet cytoskeletal reorganisation is a critical component of platelet activation and thrombus formation in haemostasis. The Rho GTPases RhoA, Rac1 and Cdc42 are the primary drivers in the dynamic reorganisation process, leading to the development of filopodia and lamellipodia which dramatically increase platelet surface area upon activation. Rho GTPases cycle between their active (GTP-bound) and inactive (GDP-bound) states through tightly regulated processes, central to which are the guanine nucleotide exchange factors (GEFs) and GTPase-activating proteins (GAPs). GEFs catalyse the dissociation of GDP by inducing changes in the nucleotide binding site, facilitating GTP binding and activating Rho GTPases. By contrast, while all GTPases possess intrinsic hydrolysing activity, this reaction is extremely slow. Therefore, GAPs catalyse the hydrolysis of GTP to GDP, reverting Rho GTPases to their inactive state. Our current knowledge of these proteins is constantly being updated but there is considerably less known about the functionality of Rho GTPase specific GAPs and GEFs in platelets. In the present review, we discuss GAP and GEF proteins for Rho GTPases identified in platelets, their regulation, biological function and present a case for their further study in platelets.
引用
收藏
页数:9
相关论文
共 86 条
[1]   β-Arrestin 1 Inhibits the GTPase-Activating Protein Function of ARHGAP21, Promoting Activation of RhoA following Angiotensin II Type 1A Receptor Stimulation [J].
Anthony, D. F. ;
Sin, Y. Y. ;
Vadrevu, S. ;
Advant, N. ;
Day, J. P. ;
Byrne, A. M. ;
Lynch, M. J. ;
Milligan, G. ;
Houslay, M. D. ;
Baillie, G. S. .
MOLECULAR AND CELLULAR BIOLOGY, 2011, 31 (05) :1066-1075
[2]   Integrin engagement suppresses RhoA activity via a c-Src-dependent mechanism [J].
Arthur, WT ;
Petch, LA ;
Burridge, K .
CURRENT BIOLOGY, 2000, 10 (12) :719-722
[3]   Rho GTPases in platelet function [J].
Aslan, J. E. ;
Mccarty, O. J. T. .
JOURNAL OF THROMBOSIS AND HAEMOSTASIS, 2013, 11 (01) :35-46
[4]   Platelet Rho GTPase regulation in physiology and disease [J].
Aslan, Joseph E. .
PLATELETS, 2019, 30 (01) :17-22
[5]   The PAK system links Rho GTPase signaling to thrombin-mediated platelet activation [J].
Aslan, Joseph E. ;
Baker, Sandra M. ;
Loren, Cassandra P. ;
Haley, Kristina M. ;
Itakura, Asako ;
Pang, Jiaqing ;
Greenberg, Daniel L. ;
David, Larry L. ;
Manser, Ed ;
Chernoff, Jonathan ;
McCarty, Owen J. T. .
AMERICAN JOURNAL OF PHYSIOLOGY-CELL PHYSIOLOGY, 2013, 305 (05) :C519-C528
[6]  
Aslan Joseph E, 2011, J Mol Signal, V6, P11, DOI 10.1186/1750-2187-6-11
[7]   Spatiotemporal dynamics of GEF-H1 activation controlled by microtubule- and Src-mediated pathways [J].
Azoitei, Mihai L. ;
Noh, Jungsik ;
Marston, Daniel J. ;
Roudot, Philippe ;
Marshall, Christopher B. ;
Daugird, Timothy A. ;
Lisanza, Sidney L. ;
Sandi, Maria-Jose ;
Ikura, Mitsu ;
Sondek, John ;
Rottapel, Robert ;
Hahn, Klaus M. ;
Danuser, Gaudenz .
JOURNAL OF CELL BIOLOGY, 2019, 218 (09) :3077-3097
[8]  
Bahler M., 2008, MYOSINS SUPERFAMILY, P391, DOI [10.1007/978-1-4020-6519-4_13, DOI 10.1007/978-1-4020-6519-4_13]
[9]   A shear-restricted pathway of platelet procoagulant activity is regulated by IQGAP1 [J].
Bahou, WF ;
Scudder, L ;
Rubenstein, D ;
Jesty, J .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2004, 279 (21) :22571-22577
[10]   Temporal quantitative phosphoproteomics of ADP stimulation reveals novel central nodes in platelet activation and inhibition [J].
Beck, Florian ;
Geiger, Joerg ;
Gambaryan, Stepan ;
Solari, Fiorella A. ;
Dell'Aica, Margherita ;
Loroch, Stefan ;
Mattheij, Nadine J. ;
Mindukshev, Igor ;
Poetz, Oliver ;
Jurk, Kerstin ;
Burkhart, Julia M. ;
Fufezan, Christian ;
Heemskerk, Johan W. M. ;
Walter, Ulrich ;
Zahedi, Rene P. ;
Sickmann, Albert .
BLOOD, 2017, 129 (02) :E1-E12