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C W Tabor

Publications and source records attributed to C W Tabor.

At least 37 records · Page 2Linked to original sources

Expression of the cloned genes encoding the putrescine biosynthetic enzymes and methionine adenosyltransferase of Escherichia coli (speA, speB, speC and metK).

The speA, speB and speC genes, which code for arginine decarboxylase (ADCase), agmatine ureohydrolase (AUHase) and ornithine decarboxylase (ODCase), respectively, and the metK gene, which encodes methionine adenosyltransferase (MATase), have been cloned. The genes were isolated from hybrid ColE1 plasmids of the Clarke-Carbon collection and were ligated into plasmid pBR322. Escherichia coli strains transformed with the recombinant plasmids exhibit a 7- to 17-fold overproduction of the various enzymes, as estimated from increases in the specific activities of the enzymes assayed in crude extracts. Minicells bearing the pBR322 hybrid plasmids and labeled with radioactive lysine synthesize radiolabeled proteins with Mrs corresponding to those reported for purified ODCase, ADCase and MATase. Restriction enzyme analysis of the plasmids, combined with measurements of specific activities of the enzymes in crude extracts of cells bearing recombinant plasmids, clarified the relative position of speA and speB. The gene order in the 62- to 64-min region is serA speB speA metK speC glc.

Carboxy-Lyases↗

Specificity of polyamine requirements for the replication and maintenance of different double-stranded RNA plasmids in Saccharomyces cerevisiae.

We have shown previously that the M1 double-stranded (ds) RNA (i.e., the killer plasmid [KIL-k1]) that codes for a protein toxin requires spermidine or spermine for its replication. We now report that replication of two other ds RNA plasmids of yeast also requires polyamines: (i) M2 ds RNA [( KIL-k2]) and (ii) L-A-E, a ds RNA plasmid carrying the non-Mendelian genetic element [EXL]. Putrescine alone is sufficient to maintain L-A-E but is not sufficient to maintain either M1 ds RNA or M2 ds RNA, which require either spermidine or spermine. Once M1 or M2 or L-A-E is lost, it cannot be restored by the addition of polyamines. In contrast, L-A-HN, a ds RNA molecule that carries the cytoplasmic genes [HOK] and [NEX], is not lost during polyamine deprivation. It is striking that polyamine deprivation differentially affects L-A-E and L-A-HN, even though these two ds RNA molecules have more than 99% homology. L-C, which is the same size as L-A but very different in sequence, is also not lost on polyamine starvation.

Genotype↗

Polyamines.

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Adenosylmethionine Decarboxylase↗

S-adenosylmethionine decarboxylase of Escherichia coli. Studies on the covalently linked pyruvate required for activity.

A covalently linked pyruvoyl group is essential for the enzymatic activity of S-adenosylmethionine decarboxylase from Escherichia coli. A rapid purification method based on affinity chromatography is described for the isolation of this enzyme from an E. coli K12 strain which contains a plasmid containing the structural gene for S-adenosylmethionine decarboxylase, and which overproduces this enzyme. The purified enzyme contains one pyruvate moiety on each of six subunits. The enzyme is inactivated by incubation with carbonyl group reagents such as NaBH4 and phenylhydrazine; after inactivation, 1 mol of lactate or 1 mol of phenylhydrazone is found/mol of enzyme subunit. The enzyme is also inactivated by NaCNBH3 but only in the presence of either substrate or product and the divalent metal ion activator Mg2+; inactivation is accompanied by incorporation of 1 mol of the product, decarboxylated adenosylmethionine, per mol of enzyme subunit, suggesting that the pyruvoyl group participates in catalysis by formation of a Schiff base with the substrate. Equilibrium dialysis studies indicated a single substrate (or product) binding site/enzyme subunit.

Adenosylmethionine Decarboxylase↗