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Umair, S.

Publications and source records attributed to Umair, S..

2 recordsLinked to original sources

Teladorsagia circumcincta 1,6 bisphosphate aldolase: molecular and biochemical characterisation, structure analysis and recognition by immune hosts.

A 1095 bp full length cDNA encoding Teladorsagia circumcincta aldolase (TciALDO) was cloned, expressed in Escherichia coli, the recombinant protein purified and its kinetic properties determined. A phylogenetic tree was constructed using helminth aldolase sequences. The predicted protein consisted of 365 amino acids and was present as a single band of about 44 kDa on SDS-PAGE. Multiple alignments of the protein sequence of TciALDO with homologues from other helminths showed that the greatest similarity (93%) to the aldolases of Haemonchus contortus and Dictyocaulus viviparus, 82-86% similarity to the other nematode sequences and 68-71% similarity to cestode and trematode enzymes. Substrate binding sites and conserved regions were identified and were completely conserved in other homologues. At 25 {degrees}C, the optimum pH for TciALDO activity was pH 7.5, the Vmax was 432 {+/-} 23 nmoles.min-1.mg-1 protein and the apparent Km for the substrate fructose 1,6-bisphosphate was 0.24 {+/-} 0.01 M (mean {+/-} SEM, n = 3). Antibodies in both serum and saliva from field-immune, but not nematode-naive, sheep recognised recombinant TciALDO in enzyme-linked immunosorbent assays. The recognition of the recombinant protein by antibodies generated by exposure of sheep to native aldolase indicates similar antigenicity of the two proteins.

molecular biology

Characterisation of a Teladorsagia circumcincta glutathione transferase.

A 615 bp full length cDNA encoding a Teladorsagia circumcincta glutathione transferase (TcGST) was cloned, expressed in Escherichia coli and the recombinant protein purified and its kinetic properties determined. The predicted protein consisted of 205 amino acids and was present as a single band of about 24 kDa on SDS-PAGE. Multiple alignments of the protein sequence of TcGST with homologues from other helminths showed that the highest identity of 53-68% with haem-binding nematode proteins designated as members of the nu class of GSTs. Substrate binding sites and conserved regions were identified and were generally conserved. The predicted 3-dimensional structures of TcGST and HcGST revealed highly open binding cavities typical of this class of GST, considered to allow greater accessibility to diverse ligands compared with other classes of GST. At 25 {degrees}C, the optimum pH for TcGST activity was pH 7, the Vmax was 1535 {+/-} 33 nmoles.min-1.mg-1 protein and the apparent Km for the substrate 1-chloro-2,4-dinitrobenzene (CDNB) was 0.22 {+/-} 0.01 mM (mean {+/-} SD, n = 2). Antibodies in both serum and saliva from field-immune, but not nematode-naIve, sheep, recognised recombinant TcGST in enzyme-linked immunosorbent assays. The recognition of the recombinant protein by antibodies generated by exposure of sheep to the native enzyme indicates similar antigenicity of the two proteins. These findings could aid in the design of novel drugs and vaccine antigens for economically important parasites of livestock.

molecular biology