Biomedical subjects
K R Hancock
Publications and source records attributed to K R Hancock.
pPE1000: a versatile vector for the expression of epitope-tagged foreign proteins in transgenic plants.
Explore the source record for details and available documents.
Expression of the pea albumin 1 gene in transgenic white clover and tobacco.
In order to improve the quality of pasture protein for ruminant animal nutrition, we are introducing genes encoding rumen-protected proteins, rich in essential amino acids, into white clover (Trifolium repens L.). We have introduced a chimaeric gene transcribed from the 35S CaMV promoter, and encoding the pea albumin 1 (PA1) protein, rich in sulphur amino acids, into the white clover genotype WR8 by Agrobacterium-mediated transformation. A transgenic plant with high levels of PA1 mRNA was crossed with a commercial genotype from cv. Regal Ladino and both the parent and progeny plants were analyzed for expression and accumulation of PA1 gene products. Steady-state mRNA levels and transcript sizes in transgenic parent and progeny were comparable. The abundance and stability of the PA1 protein in transgenic white clover plants was examined by immunoselection of in vivo [35S]Na2SO4-labelled plant proteins. Evidence is presented here, that the 11 kDa PA1 proprotein precursor is processed correctly in petiole tissues of newly regenerated white clover plantlets but only the 6 kDa PA1a subunit accumulates in leaflets of tissue-culture-grown and older glasshouse-grown clover plants. Attempts to enhance PA1 abundance by altering its subcellular target in transgenic tobacco plants suggest that the endomembrane system is a relatively stable environment compared with the cytoplasm or chloroplast, for the accumulation of PA1, despite its low abundance there (< 0.001% total cell protein).
Identification of sulphur-rich proteins which resist rumen degradation and are hydrolysed rapidly by intestinal proteases.
Several proteins with high proportions of S-containing essential amino acids were incubated in sheep rumen fluid in vitro and their rate of digestion was examined by sodium dodecyl sulphate-polyacrylamide-gel electrophoresis. The S-rich proteins rice prolamin (10 kDa), maize zein (10 kDa) and the 3.2 kDa pumpkin (Cucurbita maxima L.) trypsin inhibitor-1 (CMTI-1) were highly resistant to rumen fluid degradation, relative to control proteins of known degradation rate (casein, bovine serum albumin (BSA) and pea (Pisum sativum) albumin-1 (PA1)). Comparison of PA1 and a recombinant N-terminal epitope-tagged PA1 indicated that addition of the epitope caused a slight increase in resistance to rumen degradation. The proteins were also incubated with a mixture of trypsin (EC 3.4.21.4) and chymotrypsin (EC 3.4.21.1). PA1, BSA and casein were hydrolysed less rapidly than rice prolamin, maize zein and CMTI-1. Digestion by these intestinal proteases appeared to be complete. Thus, the prolamin, zein and CMTI-1 proteins are suitable candidates for expression as foreign proteins in pasture plants to increase throughput and uptake of essential amino acids in sheep.
Expression and nucleotide sequence of the Clostridium acetobutylicum beta-galactosidase gene cloned in Escherichia coli.
A gene library for Clostridium acetobutylicum NCIB 2951 was constructed in the broad-host-range cosmid pLAFR1, and cosmids containing the beta-galactosidase gene were isolated by direct selection for enzyme activity on X-Gal (5-bromo-4-chloro-3-indolyl-beta-D-galactoside) plates after conjugal transfer of the library to a lac deletion derivative of Escherichia coli. Analysis of various pSUP202 subclones of the lac cosmids on X-Gal plates localized the beta-galactosidase gene to a 5.1-kb EcoRI fragment. Expression of the Clostridium beta-galactosidase gene in E. coli was not subject to glucose repression. By using transposon Tn5 mutagenesis, two gene loci, cbgA (locus I) and cbgR (locus II), were identified as necessary for beta-galactosidase expression in E. coli. DNA sequence analysis of the entire 5.1-kb fragment identified open reading frames of 2,691 and 303 bp, corresponding to locus I and locus II, respectively, and in addition a third truncated open reading frame of 825 bp. The predicted gene product of locus I, CbgA (molecular size, 105 kDa), showed extensive amino acid sequence homology with E. coli LacZ, E. coli EbgA, and Klebsiella pneumoniae LacZ and was in agreement with the size of a polypeptide synthesized in maxicells containing the cloned 5.1-kb fragment. The predicted gene product of locus II, CbgR (molecular size, 11 kDa) shares no significant homology with any other sequence in the current DNA and protein sequence data bases, but Tn5 insertions in this gene prevent the synthesis of CbgA. Complementation experiments indicate that the gene product of cbgR is required in cis with cbgA for expression of beta-galactosidase in E. coli.