Conserved Polar Residues in Transmembrane Domains V, VI, and VII of Free Fatty Acid Receptor 2 and Free Fatty Acid Receptor 3 Are Required for the Binding and Function of Short Chain Fatty Acids

被引:92
|
作者
Stoddart, Leigh A. [1 ]
Smith, Nicola J. [1 ]
Jenkins, Laura [1 ]
Brown, Andrew J. [2 ]
Milligan, Graeme [1 ]
机构
[1] Univ Glasgow, Fac Biomed & Life Sci, Mol Pharmacol Grp, Glasgow G12 8QQ, Lanark, Scotland
[2] GlaxoSmithKline, Dept Screening & Compound Profiling, Harlow CM19 5AW, Essex, England
基金
英国生物技术与生命科学研究理事会;
关键词
D O I
10.1074/jbc.M805601200
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
FFA2 and FFA3 are closely related G protein-coupled receptors that bind and respond to short chain fatty acids. (FFA2 and FFA3 are the provisional International Union of Pharmacology designations for the receptors previously called GPR43 and GPR41, respectively.) Sequence comparisons between these two receptors and alignments with the related G protein-coupled receptor FFA1, linked to homology modeling based on the atomic level structure of bovine rhodopsin, indicated the potential for polar residues within the transmembrane helix bundle to play important roles in ligand recognition and function. In both FFA2 and FFA3, mutation of either an arginine at the top of transmembrane domain V or a second arginine at the top of transmembrane domain VII eliminated the function of a range of short chain fatty acids. Mutation of a histidine in transmembrane domain VI, predicted to be in proximity to both the arginine residues, also eliminated function in many but not all assay formats. By contrast, mutation of a histidine in transmembrane domain IV, predicted to be lower in the binding pocket, modulated function in some assays of FFA3 function but had limited effects on the function of acetate and propionate at FFA2. Interestingly, wild type FFA3 responded to caproate, whereas FFA2 did not. Mutation of the transmembrane domain IV histidine eliminated responses of FFA3 to caproate but resulted in a gain of function of FFA2 to this six-carbon fatty acid. These data demonstrate the importance of positively charged residues in the recognition and/or function of short chain fatty acids in both FFA2 and FFA3. The development of small molecule ligands that interact selectively with these receptors will allow further details of the binding pockets to be elucidated.
引用
收藏
页码:32913 / 32924
页数:12
相关论文
共 50 条
  • [41] Cardioprotection of Omega-3 Fatty Acids is Lost With Free Fatty Acid Receptor 4 Polymorphisms in the Framingham Heart Study Offspring Cohort
    Shearer, Gregory C.
    Veenstra, Jenna
    Tintle, Nathan
    O'Connell, Timothy D.
    CIRCULATION, 2018, 138
  • [42] ω3-Polyunsaturated fatty acids for heart failure: Effects of dose on efficacy and novel signaling through free fatty acid receptor 4
    O'Connell, Timothy D.
    Block, Robert C.
    Huang, Shue P.
    Shearer, Gregory C.
    JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY, 2017, 103 : 74 - 92
  • [43] Free fatty acid receptor 4-β-arrestin 2 pathway mediates the effects of different classes of unsaturated fatty acids in osteoclasts and osteoblasts
    Kasonga, Abe E.
    Kruger, Marlena C.
    Coetzee, Magdalena
    BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR AND CELL BIOLOGY OF LIPIDS, 2019, 1864 (03): : 281 - 289
  • [44] LIPOPROTEIN BINDING TO THE LIPOLYSIS STIMULATED RECEPTOR IS INITIATED BY FREE FATTY ACID-INDUCED CONFORMATIONAL REARRANGEMENT OF THE RECEPTOR
    MANN, CJ
    YEN, FT
    GUERMANI, LM
    DELPLANQUE, B
    BIHAIN, BE
    CIRCULATION, 1994, 90 (04) : 406 - 406
  • [45] Identification and Pharmacological Characterization of Multiple Allosteric Binding Sites on the Free Fatty Acid 1 Receptor
    Lin, Daniel C. -H.
    Guo, Qi
    Luo, Jian
    Zhang, Jane
    Nguyen, Kathy
    Chen, Michael
    Thanh Tran
    Dransfield, Paul J.
    Brown, Sean P.
    Houze, Jonathan
    Vimolratana, Marc
    Jiao, Xian Yun
    Wang, Yingcai
    Birdsall, Nigel J. M.
    Swaminath, Gayathri
    MOLECULAR PHARMACOLOGY, 2012, 82 (05) : 843 - 859
  • [46] A novel fluorescent ligand binding assay for free fatty acid receptor FFA1
    Watson, Sarah-Jane
    Brown, Alastair
    Holliday, Nick
    FASEB JOURNAL, 2013, 27
  • [47] EFFECTS OF FREE FATTY-ACID (FFA) ON INSULIN-RECEPTOR BINDING AND PROCESSING IN HEPATOCYTES
    HENNES, MM
    KISSEBAH, AH
    CLINICAL RESEARCH, 1989, 37 (02): : A450 - A450
  • [48] The short-chain free fatty acid receptor FFAR3 is expressed and potentiates contraction in human airway smooth muscle
    Mizuta, Kentaro
    Sasaki, Haruka
    Zhang, Yi
    Matoba, Atsuko
    Emala, Charles W., Sr.
    AMERICAN JOURNAL OF PHYSIOLOGY-LUNG CELLULAR AND MOLECULAR PHYSIOLOGY, 2020, 318 (06) : L1248 - L1260
  • [49] Free Fatty Acid Receptor 1: A New Drug Target for Type 2 Diabetes?
    Ferdaoussi, Mourad
    Bergeron, Valerie
    Kebede, Melkam
    Mancini, Arturo
    Alquier, Thierry
    Poitout, Vincent
    CANADIAN JOURNAL OF DIABETES, 2012, 36 (05) : 275 - 280
  • [50] Experimental and Emerging Free Fatty Acid Receptor Agonists for the Treatment of Type 2 Diabetes
    Patti, Angelo Maria
    Giglio, Rosaria Vincenza
    Papanas, Nikolaos
    Serban, Dragos
    Stoian, Anca Pantea
    Pafili, Kalliopi
    Al Rasadi, Khalid
    Rajagopalan, Kanya
    Rizvi, Ali A.
    Ciaccio, Marcello
    Rizzo, Manfredi
    MEDICINA-LITHUANIA, 2022, 58 (01):