Title : Molecular basis of the inositol deacylase PGAP1 involved in quality control of GPI-AP biogenesis - Hong_2024_Nat.Commun_15_8 |
Author(s) : Hong J , Li T , Chao Y , Xu Y , Zhu Z , Zhou Z , Gu W , Qu Q , Li D |
Ref : Nat Commun , 15 :8 , 2024 |
Abstract :
The secretion and quality control of glycosylphosphatidylinositol-anchored proteins (GPI-APs) necessitates post-attachment remodeling initiated by the evolutionarily conserved PGAP1, which deacylates the inositol in nascent GPI-APs. Impairment of PGAP1 activity leads to developmental diseases in humans and fatality and infertility in animals. Here, we present three PGAP1 structures (2.66-2.84 A), revealing its 10-transmembrane architecture and product-enzyme interaction details. PGAP1 holds GPI-AP acyl chains in an optimally organized, guitar-shaped cavity with apparent energetic penalties from hydrophobic-hydrophilic mismatches. However, abundant glycan-mediated interactions in the lumen counterbalance these repulsions, likely conferring substrate fidelity and preventing off-target hydrolysis of bulk membrane lipids. Structural and biochemical analyses uncover a serine hydrolase-type catalysis with atypical features and imply mechanisms for substrate entrance and product release involving a drawing compass movement of GPI-APs. Our findings advance the mechanistic understanding of GPI-AP remodeling. |
PubMedSearch : Hong_2024_Nat.Commun_15_8 |
PubMedID: 38167496 |
Gene_locus related to this paper: chatd-g0s652 , human-PGAP1 |
Inhibitor | Phosphatidylinositol(18-0_18-0) Phosphatidylinositol(18-0_20-4) POPS |
Gene_locus | chatd-g0s652 human-PGAP1 |
Family | PGAP1 |
Structure | 8K9Q 8K9R 8K9T |
Hong J, Li T, Chao Y, Xu Y, Zhu Z, Zhou Z, Gu W, Qu Q, Li D (2024)
Molecular basis of the inositol deacylase PGAP1 involved in quality control of GPI-AP biogenesis
Nat Commun
15 :8
Hong J, Li T, Chao Y, Xu Y, Zhu Z, Zhou Z, Gu W, Qu Q, Li D (2024)
Nat Commun
15 :8