7PZZ image
Deposition Date 2021-10-13
Release Date 2022-08-24
Last Version Date 2024-01-31
Entry Detail
PDB ID:
7PZZ
Keywords:
Title:
Crystal structure of serine hydroxymethyltransferase, isoform 2 from Arabidopsis thaliana (SHM2)
Biological Source:
Source Organism:
Method Details:
Experimental Method:
Resolution:
1.65 Å
R-Value Free:
0.17
R-Value Work:
0.15
R-Value Observed:
0.15
Space Group:
P 21 21 21
Macromolecular Entities
Structures with similar UniProt ID
Protein Blast
Polymer Type:polypeptide(L)
Molecule:Serine hydroxymethyltransferase 2, mitochondrial
Gene (Uniprot):SHM2
Chain IDs:A, B, C, D
Chain Length:480
Number of Molecules:4
Biological Source:Arabidopsis thaliana
Modified Residue
Compound ID Chain ID Parent Comp ID Details 2D Image
LLP A LYS modified residue
Primary Citation
Arabidopsis thaliana serine hydroxymethyltransferases: functions, structures, and perspectives.
Plant Physiol Biochem. 187 37 49 (2022)
PMID: 35947902 DOI: 10.1016/j.plaphy.2022.07.025

Abstact

Serine hydroxymethyltransferase (SHM) is one of the hallmarks of one-carbon metabolism. In plants, isoforms of SHM participate in photorespiration and/or transfer the one-carbon unit from L-serine to tetrahydrofolate (THF), hence producing 5,10-CH2-THF that is needed, e.g., for biosynthesis of methionine, thymidylate, and purines. These links highlight the importance of SHM activity in DNA biogenesis, its epigenetic methylations, and in stress responses. Plant genomes encode several SHM isoforms that localize to cytosol, mitochondria, plastids, and nucleus. In this work, we present a thorough functional and structural characterization of all seven SHM isoforms from Arabidopsis thaliana (AtSHM1-7). In particular, we analyzed tissue-specific expression profiles of the AtSHM genes. We also compared catalytic properties of the active AtSHM1-4 in terms of catalytic efficiency in both directions and inhibition by the THF substrate. Despite numerous attempts to rescue the SHM activity of AtSHM5-7, we failed, which points towards different physiological functions of these isoforms. Comparative analysis of experimental and predicted three-dimensional structures of AtSHM1-7 proteins indicated differences in regions that surround the entrance to the active site cavity.

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