IDEAS home Printed from https://ideas.repec.org/a/nat/natcom/v16y2025i1d10.1038_s41467-025-57983-4.html
   My bibliography  Save this article

Structural insights into lipid chain-length selectivity and allosteric regulation of FFA2

Author

Listed:
  • Mai Kugawa

    (The University of Tokyo
    The University of Tokyo)

  • Kouki Kawakami

    (The University of Tokyo)

  • Ryoji Kise

    (Tohoku University)

  • Carl-Mikael Suomivuori

    (Stanford University
    Stanford University School of Medicine
    Stanford University School of Medicine
    Stanford University)

  • Masaki Tsujimura

    (The University of Tokyo)

  • Kazuhiro Kobayashi

    (The University of Tokyo)

  • Asato Kojima

    (The University of Tokyo
    The University of Tokyo)

  • Wakana J. Inoue

    (The University of Tokyo)

  • Masahiro Fukuda

    (The University of Tokyo)

  • Toshiki E. Matsui

    (The University of Tokyo
    The University of Tokyo)

  • Ayami Fukunaga

    (The University of Tokyo
    The University of Tokyo)

  • Junki Koyanagi

    (The University of Tokyo)

  • Suhyang Kim

    (The University of Tokyo)

  • Hisako Ikeda

    (The University of Tokyo)

  • Keitaro Yamashita

    (The University of Tokyo)

  • Keisuke Saito

    (The University of Tokyo
    The University of Tokyo)

  • Hiroshi Ishikita

    (The University of Tokyo
    The University of Tokyo)

  • Ron O. Dror

    (Stanford University
    Stanford University School of Medicine
    Stanford University School of Medicine
    Stanford University)

  • Asuka Inoue

    (Tohoku University
    Kyoto University
    Japan Science and Technology Agency)

  • Hideaki E. Kato

    (The University of Tokyo
    The University of Tokyo
    The University of Tokyo
    Japan Science and Technology Agency)

Abstract

The free fatty acid receptor 2 (FFA2) is a G protein-coupled receptor (GPCR) that selectively recognizes short-chain fatty acids to regulate metabolic and immune functions. As a promising therapeutic target, FFA2 has been the focus of intensive development of synthetic ligands. However, the mechanisms by which endogenous and synthetic ligands modulate FFA2 activity remain unclear. Here, we present the structures of the human FFA2–Gi complex activated by the synthetic orthosteric agonist TUG-1375 and the positive allosteric modulator/allosteric agonist 4-CMTB, along with the structure of the inactive FFA2 bound to the antagonist GLPG0974. Structural comparisons with FFA1 and mutational studies reveal how FFA2 selects specific fatty acid chain lengths. Moreover, our structures reveal that GLPG0974 functions as an allosteric antagonist by binding adjacent to the orthosteric pocket to block agonist binding, whereas 4-CMTB binds the outer surface of transmembrane helices 6 and 7 to directly activate the receptor. Supported by computational and functional studies, these insights illuminate diverse mechanisms of ligand action, paving the way for precise GPCR-targeted drug design.

Suggested Citation

  • Mai Kugawa & Kouki Kawakami & Ryoji Kise & Carl-Mikael Suomivuori & Masaki Tsujimura & Kazuhiro Kobayashi & Asato Kojima & Wakana J. Inoue & Masahiro Fukuda & Toshiki E. Matsui & Ayami Fukunaga & Junk, 2025. "Structural insights into lipid chain-length selectivity and allosteric regulation of FFA2," Nature Communications, Nature, vol. 16(1), pages 1-16, December.
  • Handle: RePEc:nat:natcom:v:16:y:2025:i:1:d:10.1038_s41467-025-57983-4
    DOI: 10.1038/s41467-025-57983-4
    as

    Download full text from publisher

    File URL: https://www.nature.com/articles/s41467-025-57983-4
    File Function: Abstract
    Download Restriction: no

    File URL: https://libkey.io/10.1038/s41467-025-57983-4?utm_source=ideas
    LibKey link: if access is restricted and if your library uses this service, LibKey will redirect you to where you can use your library subscription to access this item
    ---><---

    References listed on IDEAS

    as
    1. Kendle M. Maslowski & Angelica T. Vieira & Aylwin Ng & Jan Kranich & Frederic Sierro & Di Yu & Heidi C. Schilter & Michael S. Rolph & Fabienne Mackay & David Artis & Ramnik J. Xavier & Mauro M. Teixei, 2009. "Regulation of inflammatory responses by gut microbiota and chemoattractant receptor GPR43," Nature, Nature, vol. 461(7268), pages 1282-1286, October.
    2. Kathryn Tunyasuvunakool & Jonas Adler & Zachary Wu & Tim Green & Michal Zielinski & Augustin Žídek & Alex Bridgland & Andrew Cowie & Clemens Meyer & Agata Laydon & Sameer Velankar & Gerard J. Kleywegt, 2021. "Highly accurate protein structure prediction for the human proteome," Nature, Nature, vol. 596(7873), pages 590-596, August.
    3. Shoji Maeda & Antoine Koehl & Hugues Matile & Hongli Hu & Daniel Hilger & Gebhard F. X. Schertler & Aashish Manglik & Georgios Skiniotis & Roger J. P. Dawson & Brian K. Kobilka, 2018. "Development of an antibody fragment that stabilizes GPCR/G-protein complexes," Nature Communications, Nature, vol. 9(1), pages 1-9, December.
    4. Christopher J. Draper-Joyce & Rebecca Bhola & Jinan Wang & Apurba Bhattarai & Anh T. N. Nguyen & India Cowie-Kent & Kelly O’Sullivan & Ling Yeong Chia & Hariprasad Venugopal & Celine Valant & David M., 2021. "Positive allosteric mechanisms of adenosine A1 receptor-mediated analgesia," Nature, Nature, vol. 597(7877), pages 571-576, September.
    5. John Jumper & Richard Evans & Alexander Pritzel & Tim Green & Michael Figurnov & Olaf Ronneberger & Kathryn Tunyasuvunakool & Russ Bates & Augustin Žídek & Anna Potapenko & Alex Bridgland & Clemens Me, 2021. "Highly accurate protein structure prediction with AlphaFold," Nature, Nature, vol. 596(7873), pages 583-589, August.
    6. Kaihua Zhang & Hao Wu & Nicholas Hoppe & Aashish Manglik & Yifan Cheng, 2022. "Fusion protein strategies for cryo-EM study of G protein-coupled receptors," Nature Communications, Nature, vol. 13(1), pages 1-11, December.
    7. Shian Liu & Navid Paknejad & Lan Zhu & Yasuyuki Kihara & Manisha Ray & Jerold Chun & Wei Liu & Richard K. Hite & Xin-Yun Huang, 2022. "Differential activation mechanisms of lipid GPCRs by lysophosphatidic acid and sphingosine 1-phosphate," Nature Communications, Nature, vol. 13(1), pages 1-11, December.
    8. Jiawei Zhao & Matthias Elgeti & Evan S. O’Brien & Cecília P. Sár & Amal EI Daibani & Jie Heng & Xiaoou Sun & Elizabeth White & Tao Che & Wayne L. Hubbell & Brian K. Kobilka & Chunlai Chen, 2024. "Ligand efficacy modulates conformational dynamics of the µ-opioid receptor," Nature, Nature, vol. 629(8011), pages 474-480, May.
    9. Hideaki E. Kato & Yan Zhang & Hongli Hu & Carl-Mikael Suomivuori & Francois Marie Ngako Kadji & Junken Aoki & Kaavya Krishna Kumar & Rasmus Fonseca & Daniel Hilger & Weijiao Huang & Naomi R. Latorraca, 2019. "Conformational transitions of a neurotensin receptor 1–Gi1 complex," Nature, Nature, vol. 572(7767), pages 80-85, August.
    10. Weijiao Huang & Aashish Manglik & A. J. Venkatakrishnan & Toon Laeremans & Evan N. Feinberg & Adrian L. Sanborn & Hideaki E. Kato & Kathryn E. Livingston & Thor S. Thorsen & Ralf C. Kling & Sébastien , 2015. "Structural insights into µ-opioid receptor activation," Nature, Nature, vol. 524(7565), pages 315-321, August.
    Full references (including those not matched with items on IDEAS)

    Most related items

    These are the items that most often cite the same works as this one and are cited by the same works as this one.
    1. Chunyou Mao & Mengru Gao & Shao-Kun Zang & Yanqing Zhu & Dan-Dan Shen & Li-Nan Chen & Liu Yang & Zhiwei Wang & Huibing Zhang & Wei-Wei Wang & Qingya Shen & Yanhui Lu & Xin Ma & Yan Zhang, 2023. "Orthosteric and allosteric modulation of human HCAR2 signaling complex," Nature Communications, Nature, vol. 14(1), pages 1-10, December.
    2. Hongmin Cai & Shimeng Guo & Youwei Xu & Jun Sun & Junrui Li & Zhikan Xia & Yi Jiang & Xin Xie & H. Eric Xu, 2024. "Cryo-EM structures of adenosine receptor A3AR bound to selective agonists," Nature Communications, Nature, vol. 15(1), pages 1-10, December.
    3. Xuan Zhang & Yujing Wang & Shreyas Supekar & Xu Cao & Jingkai Zhou & Jessica Dang & Siqi Chen & Laura Jenkins & Sara Marsango & Xiu Li & Guibing Liu & Graeme Milligan & Mingye Feng & Hao Fan & Weimin , 2023. "Pro-phagocytic function and structural basis of GPR84 signaling," Nature Communications, Nature, vol. 14(1), pages 1-12, December.
    4. Na Wang & Xinheng He & Jing Zhao & Hualiang Jiang & Xi Cheng & Yu Xia & H. Eric Xu & Yuanzheng He, 2022. "Structural basis of leukotriene B4 receptor 1 activation," Nature Communications, Nature, vol. 13(1), pages 1-10, December.
    5. Yitong Ma & Yijie Wang & Mengyuan Tang & Yuan Weng & Ying Chen & Yueming Xu & Shuxiao An & Yiran Wu & Suwen Zhao & Huanhuan Xu & Dali Li & Mingyao Liu & Weiqiang Lu & Heng Ru & Gaojie Song, 2025. "Cryo-EM structure of an activated GPR4–Gs signaling complex," Nature Communications, Nature, vol. 16(1), pages 1-10, December.
    6. Canrong Wu & Youwei Xu & Qian He & Dianrong Li & Jia Duan & Changyao Li & Chongzhao You & Han Chen & Weiliang Fan & Yi Jiang & H. Eric Xu, 2023. "Ligand-induced activation and G protein coupling of prostaglandin F2α receptor," Nature Communications, Nature, vol. 14(1), pages 1-11, December.
    7. Wataru Shihoya & Hiroaki Akasaka & Peter A. Jordan & Anna Lechner & Bethany K. Okada & Gabriella Costa Machado da Cruz & Fumiya K. Sano & Tatsuki Tanaka & Ryo Kawahara & Rajan Chaudhari & Hiroko Masam, 2025. "Structure of a lasso peptide bound ETB receptor provides insights into the mechanism of GPCR inverse agonism," Nature Communications, Nature, vol. 16(1), pages 1-11, December.
    8. Pujun Xie & Yan Li & Gaëlle Lamon & Huihui Kuang & Da-Neng Wang & Nathaniel J. Traaseth, 2025. "A fiducial-assisted strategy compatible with resolving small MFS transporter structures in multiple conformations using cryo-EM," Nature Communications, Nature, vol. 16(1), pages 1-17, December.
    9. Edin Muratspahić & Kristine Deibler & Jianming Han & Nataša Tomašević & Kirtikumar B. Jadhav & Aina-Leonor Olivé-Marti & Nadine Hochrainer & Roland Hellinger & Johannes Koehbach & Jonathan F. Fay & Mo, 2023. "Design and structural validation of peptide–drug conjugate ligands of the kappa-opioid receptor," Nature Communications, Nature, vol. 14(1), pages 1-17, December.
    10. Jiale Liang & Asuka Inoue & Tatsuya Ikuta & Ruixue Xia & Na Wang & Kouki Kawakami & Zhenmei Xu & Yu Qian & Xinyan Zhu & Anqi Zhang & Changyou Guo & Zhiwei Huang & Yuanzheng He, 2023. "Structural basis of lysophosphatidylserine receptor GPR174 ligand recognition and activation," Nature Communications, Nature, vol. 14(1), pages 1-10, December.
    11. Xinyan Zhu & Yu Qian & Xiaowan Li & Zhenmei Xu & Ruixue Xia & Na Wang & Jiale Liang & Han Yin & Anqi Zhang & Changyou Guo & Guangfu Wang & Yuanzheng He, 2022. "Structural basis of adhesion GPCR GPR110 activation by stalk peptide and G-proteins coupling," Nature Communications, Nature, vol. 13(1), pages 1-11, December.
    12. Lior Peri & Donna Matzov & Dominic R. Huxley & Alon Rainish & Fabrizio Fierro & Liel Sapir & Tara Pfeiffer & Lukas Waterloo & Harald Hübner & Yoav Peleg & Peter Gmeiner & Peter J. McCormick & Dorothee, 2024. "A bitter anti-inflammatory drug binds at two distinct sites of a human bitter taste GPCR," Nature Communications, Nature, vol. 15(1), pages 1-15, December.
    13. Ying Lyu & Chunting Fu & Haiyun Ma & Zhaoming Su & Ziyi Sun & Xiaoming Zhou, 2024. "Engineering of a mammalian VMAT2 for cryo-EM analysis results in non-canonical protein folding," Nature Communications, Nature, vol. 15(1), pages 1-9, December.
    14. Surabhi Kokane & Ashutosh Gulati & Pascal F. Meier & Rei Matsuoka & Tanadet Pipatpolkai & Giuseppe Albano & Tin Manh Ho & Lucie Delemotte & Daniel Fuster & David Drew, 2025. "PIP2-mediated oligomerization of the endosomal sodium/proton exchanger NHE9," Nature Communications, Nature, vol. 16(1), pages 1-17, December.
    15. Pierre Azoulay & Joshua Krieger & Abhishek Nagaraj, 2024. "Old Moats for New Models: Openness, Control, and Competition in Generative Artificial Intelligence," NBER Chapters, in: Entrepreneurship and Innovation Policy and the Economy, volume 4, pages 7-46, National Bureau of Economic Research, Inc.
    16. Xin Yong & Guowen Jia & Qin Yang & Chunzhuang Zhou & Sitao Zhang & Huaqing Deng & Daniel D. Billadeau & Zhaoming Su & Da Jia, 2025. "Cryo-EM structure of the BLOC-3 complex provides insights into the pathogenesis of Hermansky-Pudlak syndrome," Nature Communications, Nature, vol. 16(1), pages 1-15, December.
    17. Jun-Yu Si & Yuan-Mei Chen & Ye-Hui Sun & Meng-Xue Gu & Mei-Ling Huang & Lu-Lu Shi & Xiao Yu & Xiao Yang & Qing Xiong & Cheng-Bao Ma & Peng Liu & Zheng-Li Shi & Huan Yan, 2024. "Sarbecovirus RBD indels and specific residues dictating multi-species ACE2 adaptiveness," Nature Communications, Nature, vol. 15(1), pages 1-15, December.
    18. Deyun Qiu & Jinxin V. Pei & James E. O. Rosling & Vandana Thathy & Dongdi Li & Yi Xue & John D. Tanner & Jocelyn Sietsma Penington & Yi Tong Vincent Aw & Jessica Yi Han Aw & Guoyue Xu & Abhai K. Tripa, 2022. "A G358S mutation in the Plasmodium falciparum Na+ pump PfATP4 confers clinically-relevant resistance to cipargamin," Nature Communications, Nature, vol. 13(1), pages 1-18, December.
    19. Shuo-Shuo Liu & Tian-Xia Jiang & Fan Bu & Ji-Lan Zhao & Guang-Fei Wang & Guo-Heng Yang & Jie-Yan Kong & Yun-Fan Qie & Pei Wen & Li-Bin Fan & Ning-Ning Li & Ning Gao & Xiao-Bo Qiu, 2024. "Molecular mechanisms underlying the BIRC6-mediated regulation of apoptosis and autophagy," Nature Communications, Nature, vol. 15(1), pages 1-16, December.
    20. Zhao-Shan Chen & Hsiang-Chi Huang & Xiangkun Wang & Karin Schön & Yane Jia & Michael Lebens & Danica F. Besavilla & Janarthan R. Murti & Yanhong Ji & Aishe A. Sarshad & Guohua Deng & Qiyun Zhu & David, 2025. "Influenza A Virus H7 nanobody recognizes a conserved immunodominant epitope on hemagglutinin head and confers heterosubtypic protection," Nature Communications, Nature, vol. 16(1), pages 1-17, December.

    More about this item

    Statistics

    Access and download statistics

    Corrections

    All material on this site has been provided by the respective publishers and authors. You can help correct errors and omissions. When requesting a correction, please mention this item's handle: RePEc:nat:natcom:v:16:y:2025:i:1:d:10.1038_s41467-025-57983-4. See general information about how to correct material in RePEc.

    If you have authored this item and are not yet registered with RePEc, we encourage you to do it here. This allows to link your profile to this item. It also allows you to accept potential citations to this item that we are uncertain about.

    If CitEc recognized a bibliographic reference but did not link an item in RePEc to it, you can help with this form .

    If you know of missing items citing this one, you can help us creating those links by adding the relevant references in the same way as above, for each refering item. If you are a registered author of this item, you may also want to check the "citations" tab in your RePEc Author Service profile, as there may be some citations waiting for confirmation.

    For technical questions regarding this item, or to correct its authors, title, abstract, bibliographic or download information, contact: Sonal Shukla or Springer Nature Abstracting and Indexing (email available below). General contact details of provider: http://www.nature.com .

    Please note that corrections may take a couple of weeks to filter through the various RePEc services.

    IDEAS is a RePEc service. RePEc uses bibliographic data supplied by the respective publishers.