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Twist Bioscience codon-optimised genes for expression in e. coli
Codon Optimised Genes For Expression In E. Coli, supplied by Twist Bioscience, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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GenScript corporation parr c gene from pcw3 was codon optimised for expression in e. coli
Replication and parMRC locus of <t>pCW3:</t> parM C is shown in yellow, parR C is shown in blue, the parC C site (four direct repeats shown in green) is upstream of parM C , the five inverted repeats (IR) of oriV (IR1 in orange, IR2 in pink, IR3 in lavender, IR4 in blue, IR5 in purple) are shown upstream of rep , which is indicated by the red arrow.
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Replication and parMRC locus of pCW3: parM C is shown in yellow, parR C is shown in blue, the parC C site (four direct repeats shown in green) is upstream of parM C , the five inverted repeats (IR) of oriV (IR1 in orange, IR2 in pink, IR3 in lavender, IR4 in blue, IR5 in purple) are shown upstream of rep , which is indicated by the red arrow.

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: Replication and parMRC locus of pCW3: parM C is shown in yellow, parR C is shown in blue, the parC C site (four direct repeats shown in green) is upstream of parM C , the five inverted repeats (IR) of oriV (IR1 in orange, IR2 in pink, IR3 in lavender, IR4 in blue, IR5 in purple) are shown upstream of rep , which is indicated by the red arrow.

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:

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.

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

Surface plasmon resonance analysis demonstrated that ParR homologues bind to their cognate parC sites. A) Schematic of parC overlapping fragments. parC B (pJIR4165), parC C (pCW3) and parC D (pJIR3118) fragment arrays were constructed to test binding of ParR homologues to each parC region. All fragment arrays consisted of 30 bp oligonucleotides with 20 bp of overlapping sequence and were designed using POOP. Antisense oligonucleotides were constructed with the ReDCaT linker sequence present at the 3’ end of each fragment in the diagram above. Oligonucleotides were annealed before being captured onto the ReDCaT primed Streptavidin (SA) chip via the complementary base pairing between the ReDCaT linker and the complementary ReDCaT sequence on the Biacore T200 chip. B) SPR profiles obtained when ParR B (pJIR4165) was tested against parC B (pJIR4165) (blue), parC C (pCW3) (Green) and parC D (pJIR3118) (Orange) C) Shows ParR C (pCW3) binding profiles, D) Shows ParR D (pJIR3118) binding profiles. The first lane in every binding graph shows a no protein control with the fragments C1, B1 and D1.

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: Surface plasmon resonance analysis demonstrated that ParR homologues bind to their cognate parC sites. A) Schematic of parC overlapping fragments. parC B (pJIR4165), parC C (pCW3) and parC D (pJIR3118) fragment arrays were constructed to test binding of ParR homologues to each parC region. All fragment arrays consisted of 30 bp oligonucleotides with 20 bp of overlapping sequence and were designed using POOP. Antisense oligonucleotides were constructed with the ReDCaT linker sequence present at the 3’ end of each fragment in the diagram above. Oligonucleotides were annealed before being captured onto the ReDCaT primed Streptavidin (SA) chip via the complementary base pairing between the ReDCaT linker and the complementary ReDCaT sequence on the Biacore T200 chip. B) SPR profiles obtained when ParR B (pJIR4165) was tested against parC B (pJIR4165) (blue), parC C (pCW3) (Green) and parC D (pJIR3118) (Orange) C) Shows ParR C (pCW3) binding profiles, D) Shows ParR D (pJIR3118) binding profiles. The first lane in every binding graph shows a no protein control with the fragments C1, B1 and D1.

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: SPR Assay, Construct, Binding Assay, Sequencing

JGS1987 ParR homologues bind to non-cognate parC from the same family. ParR B , ParR C and ParR D homologues from the C. perfringens isolate, JGS1987, were tested against parC B (pJIR4165), parC C (pCW3) and parC D (pJIR3118) fragment arrays, and binding stability was measured using surface plasmon resonance. A) Shows ParR B (pJGS1987B) binding profiles when used to challenge parC B (pJIR4165) (blue), parC C (pCW3) and parC D (pJIR3118). B) Shows ParR C (pJGS1987C) binding profiles (blue) C) Shows ParR D (pJGS1987D) binding profiles (orange). The first fragment in every graph shows a no protein control

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: JGS1987 ParR homologues bind to non-cognate parC from the same family. ParR B , ParR C and ParR D homologues from the C. perfringens isolate, JGS1987, were tested against parC B (pJIR4165), parC C (pCW3) and parC D (pJIR3118) fragment arrays, and binding stability was measured using surface plasmon resonance. A) Shows ParR B (pJGS1987B) binding profiles when used to challenge parC B (pJIR4165) (blue), parC C (pCW3) and parC D (pJIR3118). B) Shows ParR C (pJGS1987C) binding profiles (blue) C) Shows ParR D (pJGS1987D) binding profiles (orange). The first fragment in every graph shows a no protein control

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: Binding Assay, SPR Assay