Perturbing dimer interactions and allosteric communication modulates the immunosuppressive activity of human galectin-7

被引:5
|
作者
Pham, N. T. Hang [1 ]
Letourneau, Myriam [1 ]
Fortier, Marlene [1 ]
Begin, Gabriel [2 ,3 ,4 ]
Al-Abdul-Wahid, M. Sameer [5 ]
Pucci, Fabrizio [6 ]
Folch, Benjamin [1 ]
Rooman, Marianne [6 ]
Chatenet, David [1 ]
St-Pierre, Yves [1 ]
Lague, Patrick [2 ,3 ,4 ]
Calmettes, Charles [1 ,4 ]
Doucet, Nicolas [1 ,4 ]
机构
[1] Univ Quebec, Ctr Armand Frappier Sante Biotechnol, Inst Natl Rech Sci INRS, Laval, PQ, Canada
[2] Univ Laval, Dept Biochim Microbiol & Bioinformat, Quebec City, PQ, Canada
[3] Univ Laval, Inst Biol Integrat & Syst IBIS, Quebec City, PQ, Canada
[4] Univ Laval, PROTEO, Quebec Network Res Prot Funct Engn & Applicat, Quebec City, PQ, Canada
[5] Univ Guelph, Nucl Magnet Resonance Ctr, Guelph, ON, Canada
[6] Univ Libre Bruxelles, Computat Biol & Bioinformat, Brussels, Belgium
基金
加拿大自然科学与工程研究理事会;
关键词
PARTICLE MESH EWALD; PROTEIN; BINDING; RECOGNITION; ALGORITHM; SIMULATION; EXPRESSION; INHIBITORS; INTERFACE; STABILITY;
D O I
10.1016/j.jbc.2021.101308
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
The design of allosteric modulators to control protein function is a key objective in drug discovery programs. Altering functionally essential allosteric residue networks provides unique protein family subtype specificity, minimizes unwanted off-target effects, and helps avert resistance acquisition typically plaguing drugs that target orthosteric sites. In this work, we used protein engineering and dimer interface mutations to positively and negatively modulate the immunosuppressive activity of the proapoptotic human galectin-7 (GAL-7). Using the PoPMuSiC and BeAtMuSiC algorithms, mutational sites and residue identity were computationally probed and predicted to either alter or stabilize the GAL-7 dimer interface. By designing a covalent disulfide bridge between protomers to control homodimer strength and stability, we demonstrate the importance of dimer interface perturbations on the allosteric network bridging the two opposite glycan-binding sites on GAL-7, resulting in control of induced apoptosis in Jurkat T cells. Molecular investigation of G16X GAL-7 variants using X-ray crystallography, biophysical, and computational characterization illuminates residues involved in dimer stability and allosteric communication, along with discrete long-range dynamic behaviors involving loops 1, 3, and 5. We show that perturbing the protein-protein interface between GAL-7 protomers can modulate its biological function, even when the overall structure and ligand-binding affinity remains unaltered. This study highlights new avenues for the design of galectin-specific modulators influencing both glycandependent and glycan-independent interactions.
引用
收藏
页数:13
相关论文
共 50 条
  • [1] Perturbing dimer interaction and allosteric communication alters the immunosuppressive activity of human galectin-7
    Ngoc Thu Hang Pham
    Letourneau, Myriam
    Fortier, Marlene
    Pucci, Fabrizio
    Folch, Benjamin
    Rooman, Marianne
    Chatenet, David
    St-Pierre, Yves
    Laguee, Patrick
    Calmettees, Charles
    Doucet, Nicolas
    PROTEIN SCIENCE, 2021, 30 : 25 - 26
  • [2] Insights into the Homodimeric Interface of Human Galectin-7: From Structural and Biophysical Characterization to Immunosuppressive Activity Assays
    Ngoc Thu Hang Pham
    Letourneau, Myriam
    Pinoteau, Marie-Aude
    Fortier, Marlene
    Gagnon, Jacinthe
    Egesborg, Philippe
    Chatenet, David
    St-Pierre, Yves
    Calmettes, Charles
    Doucet, Nicolas
    PROTEIN SCIENCE, 2018, 27 : 63 - 64
  • [3] Binding of Glycerol to Human Galectin-7 Expands Stability and Modulates Its Functions
    Liang, Yebing
    Wang, Yuxiang
    Zhu, Xingyu
    Cai, Jun
    Shi, Anqi
    Huang, Jing
    Zhu, Qiuju
    Si, Yunlong
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2022, 23 (20)
  • [4] Pro4 prolyl peptide bond isomerization in human galectin-7 modulates the monomer-dimer equilibrum to affect function
    Miller, Michelle C.
    Nesmelova, Irina, V
    Daragan, Vladimir A.
    Ippel, Hans
    Michalak, Malwina
    Dregni, Aurelio
    Kaltner, Herbert
    Kopitz, Juergen
    Gabius, Hans-Joachim
    Mayo, Kevin H.
    BIOCHEMICAL JOURNAL, 2020, 477 (17) : 3147 - 3165
  • [5] HOMODIMER INTERFACE MUTATIONS OF HUMAN GALECTIN-7 ALTER ITS BIOLOGICAL ACTIVITY
    Ngoc Thu Hang Pham
    Letourneau, Myriam
    Fortier, Marlene
    Hernandez, Carolina Perusquia
    Pinoteau, Marie-Aude
    Gagnon, Jacinthe
    Egesborg, Philippe
    Chatenet, David
    St-Pierre, Yves
    Calmettes, Charles
    Doucet, Nicolas
    PROTEIN SCIENCE, 2019, 28 : 151 - 151
  • [6] CLONING, EXPRESSION, AND CHROMOSOME MAPPING OF HUMAN GALECTIN-7
    MADSEN, P
    RASMUSSEN, HH
    FLINT, T
    GROMOV, P
    KRUSE, TA
    HONORE, B
    VORUM, H
    CELIS, JE
    JOURNAL OF BIOLOGICAL CHEMISTRY, 1995, 270 (11) : 5823 - 5829
  • [7] Binding of a Soluble meso-Tetraarylporphyrin to Human Galectin-7 Induces Oligomerization and Modulates Its Pro-Apoptotic Activity
    de los Santos, Yossef Lopez
    Bernard, David N.
    Egesborg, Philippe
    Letourneau, Myriam
    Lafortune, Clara
    Cuneo, Matthew J.
    Urvoas, Agathe
    Chatenet, David
    Mahy, Jean-Pierre
    St-Pierre, Yves
    Ricoux, Remy
    Doucet, Nicolas
    BIOCHEMISTRY, 2020, 59 (48) : 4591 - 4600
  • [8] Structural basis for the recognition of carbohydrates by human galectin-7
    Leonidas, DD
    Vatzaki, EH
    Vorum, H
    Celis, JE
    Madsen, P
    Acharya, KR
    BIOCHEMISTRY, 1998, 37 (40) : 13930 - 13940
  • [9] Expression and Functions of Galectin-7 in Human and Murine Melanomas
    Biron-Pain, Katherine
    Grosset, Andree-Anne
    Poirier, Francoise
    Gaboury, Louis
    St-Pierre, Yves
    PLOS ONE, 2013, 8 (05):
  • [10] Expression and prongostic impact of galectin-7 in human lung cancer
    Tirilomi, Anna
    Tirilomis, Petros
    Elakad, Omar
    Yao, Sha
    Hinterthaner, Marc
    Danner, Bernhard C.
    Stroebel, Philipp
    Tirilomis, Theodor
    Bohnenberger, Hanibal
    von Hammerstein-Equord, Alexander
    MEDICINE, 2024, 103 (40)