Domain Architecture of the Heme-independent Yeast Cystathionine Beta-synthase Provides Insights into Mechanisms of Catalysis and Regulation
Overview
Affiliations
Cystathionine beta-synthase from yeast (Saccharomyces cerevisiae) provides a model system for understanding some of the effects of disease-causing mutations in the human enzyme. The mutations, which lead to accumulation of L-homocysteine, are linked to homocystinuria and cardiovascular diseases. Here we characterize the domain architecture of the heme-independent yeast cystathionine beta-synthase. Our finding that the homogeneous recombinant truncated enzyme (residues 1-353) is catalytically active and binds pyridoxal phosphate stoichiometrically establishes that the N-terminal residues 1-353 compose a catalytic domain. Removal of the C-terminal residues 354-507 increases the specific activity and alters the steady-state kinetic parameters including the K(d) for pyridoxal phosphate, suggesting that the C-terminal residues 354-507 compose a regulatory domain. The yeast enzyme, unlike the human enzyme, is not activated by S-adenosyl-L-methionine. The truncated yeast enzyme is a dimer, whereas the full-length enzyme is a mixture of tetramer and octamer, suggesting that the C-terminal domain plays a role in the interaction of the subunits to form higher oligomeric structures. The N-terminal catalytic domain is more stable and less prone to aggregate than full-length enzyme and is thus potentially more suitable for structure determination by X-ray crystallography. Comparisons of the yeast and human enzymes reveal significant differences in catalytic and regulatory properties.
satmut_utils: a simulation and variant calling package for multiplexed assays of variant effect.
Hoskins I, Sun S, Cote A, Roth F, Cenik C Genome Biol. 2023; 24(1):82.
PMID: 37081510 PMC: 10116734. DOI: 10.1186/s13059-023-02922-z.
Munoz-Vargas M, Rodriguez-Ruiz M, Gonzalez-Gordo S, Palma J, Corpas F Methods Mol Biol. 2023; 2642:233-240.
PMID: 36944882 DOI: 10.1007/978-1-0716-3044-0_13.
Insights into Domain Organization and Regulatory Mechanism of Cystathionine Beta-Synthase from .
Conter C, Fruncillo S, Favretto F, Fernandez-Rodriguez C, Dominici P, Martinez-Cruz L Int J Mol Sci. 2022; 23(15).
PMID: 35897745 PMC: 9331509. DOI: 10.3390/ijms23158169.
Martzoukou O, Glekas P, Avgeris M, Mamma D, Scorilas A, Kekos D mBio. 2022; 13(4):e0075422.
PMID: 35856606 PMC: 9426449. DOI: 10.1128/mbio.00754-22.
Myszkowska J, Derevenkov I, Makarov S, Spiekerkoetter U, Hannibal L Antioxidants (Basel). 2021; 10(7).
PMID: 34356298 PMC: 8301176. DOI: 10.3390/antiox10071065.