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Figure 1: Phyre2 predicted structures of PfPHB1 (a) and PfPHB2 (b). The colour bars represent the quality of prediction. ProQ2 quality assessment algorithm was used to predict the local and global quality of the protein model. The quality (bad to good) of PfPHB1 and PfPHB2 models is represented by the colour scale (a and b). Protein–protein interface residues of PfPHB1 (c) and PfPHB2 (d) interface (red) and non-interface (blue) residues are represented in different colours. (e) Yeast two-hybrid analysis of PfPHB1 and PfPHB2. pGDBUC1 and pGADC1 represent empty plasmids. pGADC1:PfPHB1 represents full-length PfPHB1 in pGADC1 plasmid. pGDBUC1:PfPHB2 indicates full-length PfPHB2 in pGDBUC1 plasmid. The control plate: Sc-Ura-Leu and experimental plate: Sc-Ura-Leu-Ade shows spots with increasing order of dilution

Figure 1: Phyre2 predicted structures of P<i>f</i>PHB1 (a) and PfPHB2 (b). The colour bars represent the quality of prediction. ProQ2 quality assessment algorithm was used to predict the local and global quality of the protein model. The quality (bad to good) of P<i>f</i>PHB1 and PfPHB2 models is represented by the colour scale (a and b). Protein–protein interface residues of P<i>f</i>PHB1 (c) and PfPHB2 (d) interface (red) and non-interface (blue) residues are represented in different colours. (e) Yeast two-hybrid analysis of P<i>f</i>PHB1 and PfPHB2. pGDBUC1 and pGADC1 represent empty plasmids. pGADC1:P<i>f</i>PHB1 represents full-length P<i>f</i>PHB1 in pGADC1 plasmid. pGDBUC1:PfPHB2 indicates full-length PfPHB2 in pGDBUC1 plasmid. The control plate: Sc-Ura-Leu and experimental plate: Sc-Ura-Leu-Ade shows spots with increasing order of dilution