TY - JOUR
T1 - Molecular association model of PPARα and its new specific and efficient ligand, pemafibrate
T2 - Structural basis for SPPARMα
AU - Yamamoto, Yuta
AU - Takei, Kenta
AU - Arulmozhiraja, Sundaram
AU - Sladek, Vladimir
AU - Matsuo, Naoya
AU - Han, Song iee
AU - Matsuzaka, Takashi
AU - Sekiya, Motohiro
AU - Tokiwa, Takaki
AU - Shoji, Mitsuo
AU - Shigeta, Yasuteru
AU - Nakagawa, Yoshimi
AU - Tokiwa, Hiroaki
AU - Shimano, Hitoshi
N1 - Publisher Copyright:
© 2018 Elsevier Inc.
PY - 2018/5/5
Y1 - 2018/5/5
N2 - Peroxisome proliferator-activated receptor-α (PPARα) is a ligand-activated transcription factor involved in the regulation of lipid homeostasis and improves hypertriglyceridemia. Pemafibrate is a novel selective PPARα modulator (SPPARMα) that activates PPARα transcriptional activity. Here, we computationally constructed the structure of the human PPARα in a complex with pemafibrate, along with that of hPPARα complexed with the classical fenofibrate, and studied their interactions quantitatively by using the first-principles calculations-based fragment molecular orbital (FMO) method. Comprehensive structural and protein-ligand binding elucidation along with the in vitro luciferase analysis let us to identify pemafibrate as a novel SPPARMα. Unlike known fibrate ligands, which bind only with the arm I of the Y-shaped ligand binding pocket, the Y-shaped pemafibrate binds to the entire cavity region. This lock and key nature causes enhanced induced fit in pemafibrate-ligated PPARα. Importantly, this selective modulator allosterically changes PPARα conformation to form a brand-new interface, which in turn binds to PPARα co-activator, PGC-1α resulting in the full activation of PPARα. The structural basis for the potent effects of pemafibrate on PPARα transcriptional activity predicted by the in silico FMO methods was confirmed by in vitro luciferase assay for mutants. The unique binding mode of pemafibrate reveals a new pattern of nuclear receptor ligand recognition and suggests a novel basis for ligand design, offering cues for improving the binding affinity and selectivity of ligand for better clinical consequences. The findings explain the high affinity and efficacy of pemafibrate, which is expected to be in the clinical use soon.
AB - Peroxisome proliferator-activated receptor-α (PPARα) is a ligand-activated transcription factor involved in the regulation of lipid homeostasis and improves hypertriglyceridemia. Pemafibrate is a novel selective PPARα modulator (SPPARMα) that activates PPARα transcriptional activity. Here, we computationally constructed the structure of the human PPARα in a complex with pemafibrate, along with that of hPPARα complexed with the classical fenofibrate, and studied their interactions quantitatively by using the first-principles calculations-based fragment molecular orbital (FMO) method. Comprehensive structural and protein-ligand binding elucidation along with the in vitro luciferase analysis let us to identify pemafibrate as a novel SPPARMα. Unlike known fibrate ligands, which bind only with the arm I of the Y-shaped ligand binding pocket, the Y-shaped pemafibrate binds to the entire cavity region. This lock and key nature causes enhanced induced fit in pemafibrate-ligated PPARα. Importantly, this selective modulator allosterically changes PPARα conformation to form a brand-new interface, which in turn binds to PPARα co-activator, PGC-1α resulting in the full activation of PPARα. The structural basis for the potent effects of pemafibrate on PPARα transcriptional activity predicted by the in silico FMO methods was confirmed by in vitro luciferase assay for mutants. The unique binding mode of pemafibrate reveals a new pattern of nuclear receptor ligand recognition and suggests a novel basis for ligand design, offering cues for improving the binding affinity and selectivity of ligand for better clinical consequences. The findings explain the high affinity and efficacy of pemafibrate, which is expected to be in the clinical use soon.
KW - Fenofibrate
KW - Fragment molecular orbital theory
KW - Luciferase assay
KW - Pemafibrate
KW - Peroxisome proliferator-activated receptors
KW - Protein-ligand interaction
UR - http://www.scopus.com/inward/record.url?scp=85044307341&partnerID=8YFLogxK
U2 - 10.1016/j.bbrc.2018.03.135
DO - 10.1016/j.bbrc.2018.03.135
M3 - 学術論文
C2 - 29567478
AN - SCOPUS:85044307341
SN - 0006-291X
VL - 499
SP - 239
EP - 245
JO - Biochemical and Biophysical Research Communications
JF - Biochemical and Biophysical Research Communications
IS - 2
ER -