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Molecular properties of human guanylate cyclase–activating protein 2 (GCAP2) and its retinal dystrophy–associated variant G157R
- Source :
- The Journal of Biological Chemistry
- Publication Year :
- 2021
- Publisher :
- Elsevier BV, 2021.
-
Abstract
- In murine and bovine photoreceptors, guanylate cyclase–activating protein 2 (GCAP2) activates retinal guanylate cyclases (GCs) at low Ca2+ levels, thus contributing to the Ca2+/cGMP negative feedback on the cyclase together with its paralog guanylate cyclase–activating protein 1, which has the same function but different Ca2+ sensitivity. In humans, a GCAP2 missense mutation (G157R) has been associated with inherited retinal degeneration (IRD) via an unknown molecular mechanism. Here, we characterized the biochemical properties of human GCAP2 and the G157R variant, focusing on its dimerization and the Ca2+/Mg2+-binding processes in the presence or absence of N-terminal myristoylation. We found that human GCAP2 and its bovine/murine orthologs significantly differ in terms of oligomeric properties, cation binding, and GC regulation. Myristoylated GCAP2 endothermically binds up to 3 Mg2+ with high affinity and forms a compact dimer that may reversibly dissociate in the presence of Ca2+. Conversely, nonmyristoylated GCAP2 does not bind Mg2+ over the physiological range and remains as a monomer in the absence of Ca2+. Both myristoylated and nonmyristoylated GCAP2 bind Ca2+ with high affinity. At odds with guanylate cyclase–activating protein 1 and independently of myristoylation, human GCAP2 does not significantly activate retinal GC1 in a Ca2+-dependent fashion. The IRD-associated G157R variant is characterized by a partly misfolded, molten globule-like conformation with reduced affinity for cations and prone to form aggregates, likely mediated by hydrophobic interactions. Our findings suggest that GCAP2 might be mostly implicated in processes other than phototransduction in human photoreceptors and suggest a possible molecular mechanism for G157R-associated IRD.
- Subjects :
- 0301 basic medicine
Retinal degeneration
retina
Cation binding
MM, molecular mass
PDE, phosphodiesterase 6
Protein Conformation
Biochemistry
chemistry.chemical_compound
neurodegenerative disease
Calcium-binding protein
Activating protein 2
Magnesium
DLS, dynamic light scattering
ITC, isothermal titration calorimetry
Cell biology
NCS, neuronal calcium sensor
calcium-binding proteins
cyclic GMP (cGMP)
GCAP2, guanylate cyclase–activating protein 2
GC, guanylate cyclase
MCR, mean count rate
Research Article
Visual phototransduction
vision
mGCAP2, myristoylated GCAP2
SEC, size-exclusion chromatography
CNG, cyclic nucleotide–gated channels
phototransduction
GUCA1B
Cyclase
03 medical and health sciences
Retinal Dystrophies
medicine
Humans
guanylate cyclase (guanylyl cyclase)
Molecular Biology
GCAP1, guanylate cyclase–activating protein 1
Myristoylation
IRD, inherited retinal degeneration
nmGCAP2, nonmyristoylated GCAP2
030102 biochemistry & molecular biology
GCAP
ANS, anilinonaphthalene-1-sulfonic acid
Retinal
Cell Biology
medicine.disease
Guanylate Cyclase-Activating Proteins
cGMP
030104 developmental biology
GCAP, guanylate cyclase–activating protein
chemistry
Mutation
retinal degeneration
Calcium
Protein Multimerization
Subjects
Details
- ISSN :
- 00219258
- Volume :
- 296
- Database :
- OpenAIRE
- Journal :
- Journal of Biological Chemistry
- Accession number :
- edsair.doi.dedup.....c025d7be8b1010bff981b38c4e0145f3