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Involvement of C-Terminal Histidines in Soybean PM1 Protein Oligomerization and Cu2+ Binding.

Plant Cell Physiol. 2017; 
Liu G, Liu K, Gao Y, Zheng Y.
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Peptide Synthesis Three rabbit polyclonal antibodies (PcAb1, PcAb2 and PcAb3) were raised against synthetic peptides (P1, P2 and P3, respectively) as peptide antigens corresponding to portions of the PM1 sequence (Fig. 5) by Genscript Technology Co., Ltd. (Nan-jing, China). The heat-soluble protein extract (1 µg) from soybean radicle, or recombinant proteins, with or without PICUP treatment were separated on a 15% polyacrylamide gel using standard SDS-PAGE conditions and transferred to nitrocellulose membranes. Get A Quote

摘要

Late embryogenesis abundant (LEA) proteins are widely distributed among plant species, where they contribute to abiotic stress tolerance. LEA proteins can be classified into seven groups according to conserved sequence motifs. The PM1 protein from soybean, which belongs to the Pfam LEA_1 group, has been shown previously to be at least partially natively unfolded, to bind metal ions and potentially to stabilize proteins and membranes. Here, we investigated the role of the PM1 C-terminal domain and in particular the multiple histidine residues in this half of the protein. We constructed recombinant plasmids expressing full-length PM1 and two truncated forms, PM1-N and PM1-C, which represent the N- and C-terminal ... More

关键词

Cu2+ binding; Histidine residues; LEA protein; Oligomerization; Protein conformation; Protein structure