Human Missense Mutations in Regulator of G Protein Signaling 2 Affect the Protein Function Through Multiple Mechanisms

被引:11
作者
Phan, Hoa T. N. [1 ]
Sjogren, Benita [1 ]
Neubig, Richard R. [1 ]
机构
[1] Michigan State Univ, Dept Pharmacol & Toxicol, B423 Life Sci Bldg,1355 Bogue St, E Lansing, MI 48824 USA
关键词
GENOME-WIDE ASSOCIATION; BLOOD-PRESSURE; HYPERTENSIVE PATIENTS; ADENYLYL-CYCLASE; RGS2; VARIANTS; G-PROTEIN-SIGNALING-2; IDENTIFICATION; SYSTEM; DOMAIN;
D O I
10.1124/mol.117.109215
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Regulator of G protein signaling 2 (RGS2) plays a significant role in alleviating vascular contraction and promoting vascular relaxation due to its GTPase accelerating protein activity toward G alpha q. Mice lacking RGS2 display a hypertensive phenotype, and several RGS2 missense mutations have been found predominantly in hypertensive human subjects. However, the mechanisms whereby these mutations could impact blood pressure is unknown. Here, we selected 16 rare, missense mutations in RGS2 identified in various human exome sequencing projects and evaluated their ability to inhibit intracellular calcium release mediated by angiotensin II receptor type 1 (AT1R). Four of them had reduced function and were further investigated to elucidate underlying mechanisms. Low protein expression, protein mislocalization, and reduced G protein binding were identified as likely mechanisms of the malfunctioning mutants. The Q2L mutant had 50% lower RGS2 than wild-type (WT) protein detected by Western blot. Confocal microscopy demonstrated that R44H and D40Y had impaired plasma membrane targeting; only 46% and 35% of those proteins translocated to the plasma membrane when coexpressed with G alpha(q) Q209L compared with 67% for WTRGS2. The R188H mutant had a significant reduction in Gaq binding affinity (10-fold increase in K-i compared with WT RGS2 in a flow cytometry competition binding assay). This study provides functional data for 16 human RGS2 missense variants on their effects on AT1R-mediated calcium mobilization and provides molecular understanding of those variants with functional loss in vitro. These molecular behaviors can provide insight to inform antihypertensive therapeutics in individuals with variants having reduced function.
引用
收藏
页码:451 / 458
页数:8
相关论文
共 52 条
  • [1] Genetic purgatory and the cardiac channelopathies: Exposing the variants of uncertain/unknown significance issue
    Ackerman, Michael J.
    [J]. HEART RHYTHM, 2015, 12 (11) : 2325 - 2331
  • [2] A Genome-Wide Association Study of Hypertension and Blood Pressure in African Americans
    Adeyemo, Adebowale
    Gerry, Norman
    Chen, Guanjie
    Herbert, Alan
    Doumatey, Ayo
    Huang, Hanxia
    Zhou, Jie
    Lashley, Kerrie
    Chen, Yuanxiu
    Christman, Michael
    Rotimi, Charles
    [J]. PLOS GENETICS, 2009, 5 (07):
  • [3] [Anonymous], 2015, AM J PHYSIOL-REG I, DOI DOI 10.1152/ajpregu.00078.2015
  • [4] N-terminal residues control proteasomal degradation of RGS2, RGS4, and RGS5 in human embryonic kidney 293 cells
    Bodenstein, Johannes
    Sunahara, Roger K.
    Neubig, Richard R.
    [J]. MOLECULAR PHARMACOLOGY, 2007, 71 (04) : 1040 - 1050
  • [5] Regulation of GPCR signaling in Hypertension
    Brinks, Henriette L.
    Eckhart, Andrea D.
    [J]. BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR BASIS OF DISEASE, 2010, 1802 (12): : 1268 - 1275
  • [6] Drug Treatment of Hypertension: Focus on Vascular Health
    Cameron, Alan C.
    Lang, Ninian N.
    Touyz, Rhian M.
    [J]. DRUGS, 2016, 76 (16) : 1529 - 1550
  • [7] The eIF2B-interacting domain of RGS2 protects against GPCR agonist-induced hypertrophy in neonatal rat cardiomyocytes
    Chidiac, Peter
    Sobiesiak, Alina J.
    Lee, Katherine N.
    Gros, Robert
    Nguyen, Chau H.
    [J]. CELLULAR SIGNALLING, 2014, 26 (06) : 1226 - 1234
  • [8] Genome-Wide Association Studies Will Unlock the Genetic Basis of Hypertension
    Dominiczak, Anna F.
    Munroe, Patricia B.
    [J]. HYPERTENSION, 2010, 56 (06) : 1017 - 1020
  • [9] Salt bridges: Geometrically specific, designable interactions
    Donald, Jason E.
    Kulp, Daniel W.
    DeGrado, William F.
    [J]. PROTEINS-STRUCTURE FUNCTION AND BIOINFORMATICS, 2011, 79 (03) : 898 - 915
  • [10] Genetics, Ancestry, and Hypertension: Implications for Targeted Antihypertensive Therapies
    Franceschini, Nora
    Chasman, Daniel I.
    Cooper-DeHoff, Rhonda M.
    Arnett, Donna K.
    [J]. CURRENT HYPERTENSION REPORTS, 2014, 16 (08)