The C‐terminal domain of dimeric serine hydroxymethyltransferase plays a key role in stabilization of the quaternary structure and cooperative unfolding of protein: Domain swapping studies with enzymes having high sequence identity
Open Access
- 1 August 2004
- journal article
- Published by Wiley in Protein Science
- Vol. 13 (8) , 2184-2195
- https://doi.org/10.1110/ps.04769004
Abstract
The serine hydroxymethyltransferase from Bacillus subtilis (bsSHMT) and B. stearothermophilus (bstSHMT) are both homodimers and share approximately 77% sequence identity; however, they show very different thermal stabilities and unfolding pathways. For investigating the role of N- and C-terminal domains in stability and unfolding of dimeric SHMTs, we have swapped the structural domains between bs- and bstSHMT and generated the two novel chimeric proteins bsbstc and bstbsc, respectively. The chimeras had secondary structure, tyrosine, and pyridoxal-5'-phosphate microenvironment similar to that of the wild-type proteins. The chimeras showed enzymatic activity slightly higher than that of the wild-type proteins. Interestingly, the guanidium chloride (GdmCl)-induced unfolding showed that unlike the wild-type bsSHMT, which undergoes dissociation of native dimer into monomers at low guanidium chloride (GdmCl) concentration, resulting in a non-cooperative unfolding of enzyme, its chimera bsbstc, having the C-terminal domain of bstSHMT was resistant to low GdmCl concentration and showed a GdmCl-induced cooperative unfolding from native dimer to unfolded monomer. In contrast, the wild-type dimeric bstSHMT was resistant to low GdmCl concentration and showed a GdmCl-induced cooperative unfolding, whereas its chimera bstbsc, having the C- terminal domain of bsSHMT, showed dissociation of native dimer into monomer at low GdmCl concentration and a GdmCl-induced non-cooperative unfolding. These results clearly demonstrate that the C-terminal domain of dimeric SHMT plays a vital role in stabilization of the oligomeric structure of the native enzyme hence modulating its unfolding pathway.Keywords
This publication has 23 references indexed in Scilit:
- Unusual Structural, Functional, and Stability Properties of Serine Hydroxymethyltransferase from Mycobacterium tuberculosisPublished by Elsevier ,2003
- Identification of amino acid residues, essential for maintaining the tetrameric structure of sheep liver cytosolic serine hydroxymethyltransferase, by targeted mutagenesisBiochemical Journal, 2003
- Unique oligomeric intermediates of bovine liver catalaseProtein Science, 2002
- Unique oligomeric intermediates of bovine liver catalaseProtein Science, 2002
- Crystal structure at 2.4 Å resolution of E. coli serine hydroxymethyltransferase in complex with glycine substrate and 5-formyl tetrahydrofolateJournal of Molecular Biology, 2000
- Structural Studies on Folding Intermediates of Serine Hydroxymethyltransferase Using Fluorescence Resonance Energy TransferPublished by Elsevier ,1996
- The Affinity of Pyridoxal 5′-Phosphate for Folding Intermediates of Escherichia coli Serine HydroxymethyltransferaseJournal of Biological Chemistry, 1995
- Serine hydroxymethyltransferaseEuropean Journal of Biochemistry, 1986
- Serine HydroxymethyltransferasePublished by Wiley ,1982
- The interaction of a naphthalene dye with apomyoglobin and apohemoglobinJournal of Molecular Biology, 1965