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E Atherton

Publications and source records attributed to E Atherton.

6 recordsLinked to original sources

Synthesis and characterization of mu-conotoxin IIIa.

mu-Conotoxin IIIa, a voltage-dependent sodium channel neurotoxin, has been synthesised using solid-phase peptide synthesis employing 9-fluorenylmethoxycarbonyl chemistry. After cleavage from the resin, the peptide was isolated by reverse-phase HPLC and then the six acetamidomethyl groups were removed by treatment with mercuric acetate. The reduced product so formed was purified by reverse-phase HPLC. Protocols were developed to optimize the oxidation of the cysteine residues to form disulphide bonds. Protocols employed using air oxidation together with 2-mercaptoethanol were the most effective. As complete oxidation was never obtained the oxidised peptide was purified by reverse-phase HPLC. The activity of our products was monitored using [3H]saxitoxin binding to eel membranes. The oxidised product was able to completely block [3H]saxitoxin binding in a competitive manner. Lineweaver-Burke analysis of [3H]saxitoxin binding gave a Ki of 1.5 nM, IC50 was determined as 26.6 nM. It was also shown that the pure synthetic mu-conotoxin IIIa had the same retention time on reversephase HPLC as the natural conotoxin IIIa. Thus an active toxin has been synthesised that can be used to probe sodium channels.

Binding Sites

Mapping the cysteine residues and actin-binding regions of villin by using antisera to the amino and carboxyl termini of the molecule.

Peptide antisera specific for either the amino- or carboxyl-terminal regions of villin were used to locate the position of cysteine residues in immunoblots of villin cleaved with 2-nitro-5-thiocyanobenzoic acid. Maps constructed from the cleavage pattern suggest that villin contains six cysteine residues, two located in its amino-terminal peptide of Mr 44,000, and four located in the carboxyl-terminal peptide of Mr 51,000. Gel overlays of the partial cleavage fragments with 125I-labeled actin identified a calcium-dependent actin-binding region located within the amino-terminal peptide of Mr 32,000 of villin. The peptide antibody method used, called cleavage mapping, should be a convenient technique for mapping residues and ligand binding sites in proteins.

Actins

Synthesis and some properties and antitumor effects of the actinomycin lactam analog, (di(1-L-alpha, beta-diaminopropionic))actinomycin D1.

A lactam analog of actinomycin D (AMD) has been synthesized as a potential antitumor chemotherapeutic agent. Both L-threonine residues were replaced by L-alpha,beta-diaminopropionic acid. Starting with Nalpha-benzyloxycarbonyl-Nbeta-tert-butyloxycarbonyl-L-alpha,beta-diaminopropionic acid methyl ester hydrochloride the linear intermediate Nalpha-benzyloxycarbonyl-Nbeta-(tert-butyloxycarbonylsarcosyl-L-N-methylvalyl)-L-alpha,beta-diaminopropionyl-D-valyl-L-proline p-nitrophenyl ester was prepared by conventional methods of peptide synthesis in solution. Selective cleavage of the Nbeta-tert-butyloxycarbonyl group and lactam formation afforded the desired cyclic pentapeptide derivative. The chromophore precursor, Nalpha-(2-nitro-3-benzyloxy-4-methylbenzoyl) substituent, was introduced via its symmetric anhydride. Catalytic reduction followed by ferricyanide-mediated phenoxazinone formation provided the lactam analog, [di(1'-L-alpha,beta-diaminopionic acid)]actinomycin D ([Dpr1]2-AMD). Its binding to natural and synthetic DNA and that of an analogous L-threo-alpha,beta-diaminobutyric acid containing lactam ([Dbu1]2-AMD) compared with the binding of AMD (in which the peptides are in lactone form) was studied by circular dichroic (CD) spectroscopy. The visible and uv CD spectra of free AMD differed from those of the free lactam analogs, indicating that the asymmetric environment of the pentapeptide rings in the region of the chromophore differs in free actinomycin lactone and lactams. In the presence of calf thymus DNA, PM2 DNA, and the synthetic d(A-T)-like copolymers containing 2,6-diaminopurine (DAP), poly[d(DAP-T)], and poly[d(DAP-A-T)], the rotational strengths of the optically active transitions in the visible region of the actinomycins increased, and the CD spectra in the presence of the various DNA duplexes were qualitatively similar. The CD spectra of bound actinomycin lactams resembled the spectrum of bound AMD. This suggests that the lactone and lactam actinomycins acquire a similar environment when bound to DNA. [Dpr1]2-AMD was less cytotoxic than AMD in antibacterial assays but exhibited somewhat higher toxicity in mice than AMD. At optimal dose levels the lactam analog had little or no antitumor activity in three murine tumor systems.

Animals