Journal: bioRxiv
Article Title: The specificity of ParR binding determines the compatibility of conjugative plasmids in Clostridium perfringens
doi: 10.1101/462192
Figure Lengend Snippet: ParR C (pCW3) binds to a cognate parC C (pCW3) sequence. (A) Schematic of the parC C (pCW3) fragment array that consists of 30 bp fragments that overlap by 20 bp, direct repeats are indicated above the fragment array in red. (B) Representative ParR C (pCW3) binding to the parC C (pCW3) fragment array as determined by SPR. (C) Representative SPR binding curves for ParR C (pCW3) and parC C (pCW3) fragments, ParR C (pCW3) + C3 binding curve is shown in blue, and ParR C (pCW3) + C12 binding curve is shown in red. AUC sedimentation velocity experiments were also conducted on ParR C (pCW3), parC C (pCW3) fragment C5 and ParR C (pCW3) and parC C (pCW3) fragment C5 in combination. (D) The continuous sedimentation coefficient distribution [ c ( s )] as a function of normalised sedimentation coefficient ( s 20,W ) for ParR C (pCW3). (E) The continuous mass distribution c ( M ) distribution as a function of molecular mass (Da) for ParR C (pCW3). (F) The continuous sedimentation coefficient distribution [ c ( s )] as a function of s 20,W for parC C (pCW3) C5 (red), ParR C (pCW3) (blue) and, ParR C (pCW3) and parC C (pCW3) C5 in combination (green). Residuals for each fit are shown as insets, confirming the validity of the fit of the data.
Article Snippet: The parR C gene from pCW3 was codon optimised for expression in E. coli , synthesised by GenScript and cloned into the EcoRV site of pUC57-Kan. Codon optimised parR C then was subcloned into the NdeI/XhoI sites of pET22b(+). parR D (pJIR3118) was PCR amplified from CN1020 gDNA isolated as before (O’Connor et al ., 2006) and cloned into the NdeI/Xhol site of pET22b (+) for expression. parR B (pJIR4165), parR B (pJGS1987B) parR C (pJGS1987C) and parR D (pJGS1987D) were codon optimised and synthesised before being cloned into pET22b(+) NdeI/XhoI sites by GenScript.
Techniques: Sequencing, Binding Assay, Sedimentation