| Literature DB >> 22793174 |
Farzaana Thanweer1, Naresh K Verma.
Abstract
BACKGROUND: Thirteen serotypes of Shigella flexneri (S. flexneri) have been recognised, all of which are capable of causing bacillary dysentery or shigellosis. With the emergence of the newer S. flexneri serotypes, the development of an effective vaccine has only become more challenging. One of the factors responsible for the generation of serotype diversity is an LPS O-antigen modifying, integral membrane protein known as O-acetyltransferase or Oac. Oac functions by adding an acetyl group to a specific O-antigen sugar, thus changing the antigenic signature of the parent S. flexneri strain. Oac is a membrane protein, consisting of hydrophobic and hydrophilic components. Oac bears homology to several known and predicted acetyltransferases with most homology existing in the N-terminal transmembrane (TM) regions.Entities:
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Year: 2012 PMID: 22793174 PMCID: PMC3467182 DOI: 10.1186/1471-2091-13-13
Source DB: PubMed Journal: BMC Biochem ISSN: 1471-2091 Impact factor: 4.059
Figure 1Alignment of BLASTp hits ofOac with homologous acetyltransferases. Regions highlighted in green are conserved amino acids found within TM segments, while yellow highlighted regions indicate conserved residues in cytoplasmic loops.
Amino acid residues in Oac targeted for mutagenesis
| SG 52-53 | TM II | Part of conserved motif FFiSG |
| R 62 | Loop 3 | Positively charged amino acid in cytoplasmic loop. Shows some level of conservation with homologous acetyltransferases. |
| R 73 | Loop 3 | Positively charged amino acid in cytoplasmic loop. Shows some level of conservation with homologous acetyltransferases. |
| RR 75-76 | Loop 3 | Positively charged amino acid R75 shows some level of conservation. R76 is highly conserved and belongs to motif RIfPAL. |
| FP 78-79 | TM III | Part of conserved motif RIfPAL. |
| C 84 | TM III | To investigate if it forms disulphide bonds with other cysteine residues in Oac. |
| RK 110-111 | Loop 4 | Positively charged amino acid in periplasmic loop. Not conserved in location; thus mutated to determine if amino acid charge was important to position. |
| S 114 | Loop 4 | Neutral amino acid in periplasmic loop. Not conserved in location; thus mutated to determine if amino acid charge was important to position. |
| GS 138-139 | TM IV | Part of conserved motif NGsLWT |
| WT 141-142 | TM IV | Part of conserved motif NGsLWT |
| GR 269-270 | Loop 9 | Shows some level of conservation with homologous acetyltransferases. Present in a cytoplasmic loop |
| SYG 274-276 | TM IX | Part of conserved motif SYGxY |
| FPV 282-284 | TM IX | Part of conserved motif FPVQQ |
| D 333 | Loop 11 | Negatively charged amino acid in cytoplasmic loop. Not conserved in location; thus mutated to determine if amino acid charge was important to position. |
The location of residues targeted for mutagenesis and the rationale for their selection have been described. The red colour indicates residues chosen for mutagenesis. Lower case characters in motifs represent residues which are found only in Oac and are not conserved.
Figure 2Amino acid residues of Oac selected for mutagenesis. The topology model of Oac [3] has been used to show the location of the residues targeted for mutagenesis. Residues have been colour-coded based in their effects on Oac assembly and function as outlined in Table 2. Accordingly, non-critical residues are shown in light pink, residues affecting Oac assembly (increase) without affecting function are shown in blue, residues affecting Oac assembly (decrease) without affecting function are shown in dark pink, residues affecting Oac assembly (decrease) and function are shown in yellow, residues affecting either assembly (increase) and/or function are shown in green.
Effect of mutations on Oac assembly and function
| B1790 | _ | Not assembled (negative control) | 3.8 (0.73) | N/A | N/A | N/A |
| SFL124 | Serotype Y strain | N/A | N/A | _ | _ | N/A |
| B2012/SFL1899 | Wild type Oac | Assembled (Positive control) | 120.19 (5.27) | + | + | Positive control |
| B2266/SFL2047 | SG 52-53 | Appears decreased | 34.85 (3.11) | + | _ | Critical to assembly |
| B2254/SFL1909 | RR 75-76 | Appears decreased | 79.43 (5.25) | _ | _ | Critical to assembly |
| B2260/SFL1922 | GS 138-139 | Appears decreased | 73.87 (9.85) | + | _ | Critical to assembly |
| B2264/SFL1936 | SYG 274-276 | Appears decreased | 40.38 (3.40) | _ | _ | Critical to assembly |
| B2256/SFL1916 | D 333 | Appears decreased | 46.25 (11.17) | + | + | Critical to assembly |
| B2263/SFL1935 | GR 269-270 | Appears decreased | 77.17 (14.53) | + | + | Critical to assembly |
| B2255/SFL1911 | RK 110-111 | Appears increased | 207.23 (16.77) | + | + | Critical to assembly |
| B2253/SFL1908 | R 73 | Appears increased | 176.08 (11.77) | _ | _ | Critical to assembly/function |
| B2258/SFL1920 | FP 78-79 | Appears increased | 156.45 (4.45) | + | +/_ | Critical to assembly/function |
| B2261/SFL1923 | WT 141-142 | Appears increased | 174.76 (20.79) | + | _ | Critical to assembly/function |
| B2265/SFL1937 | FPV 282-284 | Appears increased | 163.78 (9.49) | _ | _ | Critical to assembly/function |
| B2257/SFL1919 | R 62 | Appears increased | 122.05 (13.34) | + | + | Non-critical |
| B2021/SFL1910 | C 84 | No effect | 124.54 (7.39) | + | + | Non-critical |
| B2262/SFL1934 | S 114 | Appears increased | 132.32 (10.99) | + | + | Non-critical |
The table compares the overall effects of the various mutations on Oac assembly and function. Both qualitative and quantitative assays were considered to represent the effect on the protein assembly. Firstly, Western immunoblotting was used as a qualitative assay to assess the assembly of wild type and mutant Oac-PhoA-LacZα proteins. Levels of Oac- PhoA-LacZα protein assembled by the mutant constructs were then quantified and compared with the wild type protein using the BG (β-galactosidase) assay. Results are an average of two independent experimental repeats with two internal replicates. The table also shows the results of the qualitative functional assays conducted for the Oac mutants. Preliminary slide agglutination tests were confirmed by LPS Western immunoblotting using MASF6 antibodies. N/A refers to not applicable.
Figure 3SDS-PAGE ofLPS preparations of Oac mutants. LPS was subjected to Western blotting using MASF6 primary antibodies and anti-mouse IgG-HRP conjugated secondary antibodies. All samples contained approximately equal amount of LPS preparation as judged by preceding silver stained gels (gels not shown). SFL1899 is the positive control and SFL124 is the negative control. The Molecular mass marker used was the PageRulerTM prestained protein ladder (Fermentas).
Figure 4A and B: SDS-PAGE of membrane protein of Oac mutants. Proteins were subjected to Western immunoblotting using anti-PhoA antisera primary antibodies and anti-mouse IgG HRP conjugated secondary antibodies. Approximately 10 μg of protein was loaded in a 10% SDS-PAGE gel. B2012 is the positive control, B1790 is the negative control. The Molecular mass marker used was the PageRulerTM prestained protein ladder (Fermentas). The 91 kDa Oac-PhoA-LacZα protein band is indicated.