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Updated: Jan 9, 2026

Biochemical Reconstitution of Steroid Receptor•Hsp90 Protein Complexes and Reactivation of Ligand Binding
Published on: September 21, 2011
Sorghum bicolor membrane steroid binding protein 1 can bind heme and remodel ER membranes
Khuanpiroon Ratanasopa1,2, Rocio Ochoa-Fernandez1, Silas B Mellor1
1Department of Plant and Environmental Sciences, University of Copenhagen, Thorvaldsensvej 40, 1871 Frederiksberg, Denmark.
Abstract:
Plant membrane steroid binding proteins (MSBPs) belong to the membrane-associated progesterone receptors (MAPRs), which is present in all eukaryotic kingdoms. Plant MSBPs have been shown to regulate the function of cytochrome P450 enzymes, bind different steroidal compounds and confer salt tolerance. However, the exact molecular function of plant MSBPs remains elusive. Here, we perform a phylogenetic analysis of the six MAPR genes encoded in the Sorghum bicolor genome. Of these, four group into a distinct MSBP clade characterized by being N-terminally membrane anchored followed by a cytochrome b5 domain and an extended disordered C-terminal. Biophysical characterization of SbMSBP1 demonstrates that this protein can bind heme, which leads to dimerization potentially through a heme-heme stacking mechanism. Using untargeted proteomics, We further show that MSBPs are upregulated in both root and shoot tissues upon exposure to salt stress. Based on weighted gene co-expression network analysis, we find that SbMSBP1 abundance clusters with endoplasmic reticulum (ER) remodeling and vesicle transport proteins. We further show that overexpression of SbMSBP1 in S. bicolor protoplasts and tobacco results in formation of structures consistent with organized smooth ER. Our data indicate that SbMSBP1 functions to remodel ER membranes, which may be directly linked to a functional role in stress resilience toward both biotic and abiotic stresses and furthermore could serve as a useful tool for metabolic engineering of ER-scaffolded biosynthetic pathways.
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