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J R Deschamps

Publications and source records attributed to J R Deschamps.

13 recordsLinked to original sources

Determining the occurrence of a 3(10)-helix and an alpha-helix in two different segments of a lipopeptaibol antibiotic using TOAC, a nitroxide spin-labeled C(alpha)-tetrasubstituted alpha-aminoacid.

Trichogin GA IV is a 11-residue lipopeptaibol antibiotic exhibiting membrane modifying properties. We synthesized step-by-step by solution methods three trichogin analogues, each with a double Aib (alpha-aminoisobutyric acid)-->TOAC (2,2,6,6-tetramethylpiperidine-1-oxyl-4-amino-4-carboxylic acid) replacement. The strict similarity in the conformational propensities of Aib and TOAC allowed us to exploit these analogues in a detailed investigation of the conformation of this lipopeptaibol in different organic solvents and in a membrane-mimetic environment using in particular the double spin labeling ESR technique. We conclude that the secondary structure in solution remains essentially unchanged if compared to that previously found in the crystal state for trichogin. More specifically, the N-terminal region of the peptide folds in a 3(10)-helix, while the central and C-terminal regions are mainly alpha-helical. An additional, significant proof for the modest plasticity of the trichogin structure was obtained by an X-ray diffraction analysis of the nOct-[TOAC4,8, Leu-OMe11] analogue. For the three analogues permeability measurements revealed membrane-modifying properties comparable to those of natural trichogin.

Aminoisobutyric Acids↗

Tyrosinium-D-tetrahydroisoquinoline-3-carboxylate 1.5-hydrate and tyrosyl-D-tetrahydroisoquinoline-3-carboxamide hydrate.

Crystals of the two dipeptide title compounds, Tyr-D-Tic, C19H20N2O4.1.5H2O, and Tyr-D-Tic-NH2, C19H21N3O3.H2O, were prepared by the sitting-drop method. Tyr-D-Tic is orthorhombic (P2(1)2(1)2(1)) and crystallizes as a zwitterion. The asymmetric unit contains two peptide molecules and three molecules of water. Tyr-D-Tic-NH2 crystals are monoclinic (P2(1)), the asymmetric unit containing one peptide molecule and one molecule of water. Despite some differences in packing, the conformation of the two dipeptides is almost identical (r.m.s. deviation for non-H atoms is approximately 0.18 A).

Crystallography, X-Ray↗

X-ray structure of Tyr-D-Tic-Phe-Phe-NH2 (D-TIPP-NH2), a highly potent mu-receptor selective opioid agonist. Comparison with proposed model structures.

Tyr-D-Tic-Phe-Phe-NH2 (D-TIPP), a linear tetrapeptide containing the conformationally restricted Tic residue (tetrahydroisoquinoline-3-carboxylic acid), is an opioid agonist which exhibits high affinity and selectivity for the mu-receptor. Its conformational features have been studied using a combination, a solid-state (X-ray) and modeling (molecular mechanics and Monte Carlo simulations) methods. The results of the X-ray study showed two distinct conformers for D-TIPP, with the main differences lying in the orientation of the Tyr side-chain and the presence of both D-Tic(+) and D-Tic(-) conformations for the D-Tic residue. The peptide backbone is folded and stabilized by the formation of one intramolecular hydrogen bond. The modeling results also indicated a folded backbone for the peptide and both cis and trans conformers for the D-Tic residue are found in the lowest-energy structures. Comparison of the X-ray and modeling results shows many similarities especially around the D-Tic residue.

Crystallography, X-Ray↗

[D-Ala2,D-Leu5]-enkephalin hydrochloride.

The title compound, L-tyrosyl-D-alanyl-glycyl-L-phenyl-alanyl-D-leucine hydrochloride (C29H40N5O7+. Cl-), co-crystallizes with 2-butanone (C4H8O). The structure determination reveals a slightly distorted type I' beta-bend conformation stabilized by one intramolecular hydrogen bond. This conformation is similar to that observed for other [Leu]-enkephalin analogues.

Amino Acid Sequence↗

A diacetylmorphine polymorph.

The title compound, 7,8-didehydro-4,5-epoxy-17-methylmorphinan-3,6-diyl diacetate, C21H23NO5, was crystallized from a solution of its hydrochloride and sodium acetate. Unlike prior reports in which crystals were hexagonal shaped (orthorhombic) and in space group P2(1)2(1)2(1), the crystals in the present determination grew as large prisms (monoclinic) and were in space group P2(1).

Crystallography, X-Ray↗

Structural studies of opioid peptides: a review of recent progress in x-ray diffraction studies.

The solid state structures of many opioid peptide agonists have been elucidated by x-ray diffraction analysis. Recently, the first structure of an opioid peptide antagonist has been determined. Theoretically, linear peptides can have many different backbone conformations, yet early x-ray studies (1983-1987) on enkephalin and its analogues showed only two different backbone conformations: extended and single beta-bend. In 1989 enkephalin was observed in a third conformation, a double beta-bend. Since that time diffraction studies have been completed on the rationally designed linear opioid peptide agonists DTLET (Tyr-D-Thr-Gly-Phe-Leu-Thr) and DADLE (D-Ala2,D-Leu5-enkephalin) as well as on several cyclic enkephalin analogues including DPDPE (Tyr-[D-Pen-Gly-Phe-D-Pen]) and JOM-13 (Tyr-[D-Cys-Phe-D-Pen]). The most recent review of the x-ray studies on this class of compounds was written in 1988. This paper will update that review to include the results of studies completed since that time.

Amino Acid Sequence↗

Rapid purification of recombinant green fluorescent protein using the hydrophobic properties of an HPLC size-exclusion column.

The green fluorescent protein (GFP) of the jelly fish Aequoria victoria was cloned into an Escherichia coli cell line that is a methionine auxotroph. The recombinant GFP (rGFP) was isolated from the cells and purified using a simple procedure consisting of only two chromatographic steps: size-exclusion chromatography and ion-exchange HPLC. Due to the hydrophobic nature of the protein, the surface characteristics of the HPLC size column, and the high initial salt concentration, the rGFP sticks to the size column and is eluted by reducing the salt concentration. Due to this unique behavior the purification procedure can readily be scaled to handle larger quantities of rGFP.

Animals↗

Methyl N,N-diallyl-O-tert-butyltyrosyl-alpha-aminoisobutyrl-alpha- aminoisobutyrate, C28H43N3O5.

In this N- and C-protected tripeptide the nine back-bone atoms are essentially planar and fully extended except for N1 and C3' which lie below the plane and are folded in towards it. The tyrosine side chain extends away from the opposite side of the plane. There is one (N-H)i ... (O = C)i intramolecular hydrogen bond and a weak (N-H)i+2 ... (O = C)i intermolecular hydrogen bond [where (i) = 2].

Amino Acid Sequence↗

Crystal structure of deltakephalin: a delta-selective opioid peptide with a novel beta-bend-like conformation.

The solid-state structure of deltakephalin (Tyr-DThr-Gly-Phe-Leu-Thr) has been determined by single-crystal X-ray diffraction. Deltakephalin (DTLET) is a synthetic opioid peptide which differs from enkephalin in that a D-Thr has been substituted for Gly2 and a sixth residue, L-Thr, has been added. Clear colorless plates obtained using vapor diffusion and macro-seeding crystallization techniques were monoclinic; space group C2 with a = 27.389(5), b = 9.205(2), c = 16.788(2) A, beta = 98.87(2) degrees and V = 4181.4(14) A3. The asymmetric unit contained one molecule of DTLET and six molecules of water, giving a calculated density of 1.28 g cm-3. The crystal structure revealed that DTLET has a pseudo type I' beta-bend which is stabilized by an intramolecular side-chain to backbone hydrogen bond. This is the first reported observation of a pseudo beta-bend conformation in a solid-state structure of an enkephalin analog.

Crystallography, X-Ray↗

Preparation and initial characterization of crystals of the photoprotein aequorin from Aequorea victoria.

Crystals of recombinant aequorin, the photoprotein from the jellyfish Aequorea victoria, have been grown from solutions containing sodium phosphate. The crystals grow as thin plates which diffract to beyond 2.2 A resolution. The crystals are orthorhombic, space group P2(1)2(1)2(1); the axes are a = 89.1(1), b = 88.4(1), and c = 52.7(1) A. The asymmetric unit contains two molecules. Crystals exposed to calcium ion solutions emit a steady glow and slowly deteriorate, confirming that the crystals consist of a charged, competent photoprotein. This represents the first successful preparation of single crystals of a photoprotein suitable for diffraction analysis.

Aequorin↗

A partial primary structure of squid hepatopancreas organophosphorus acid anhydrolase.

Earlier studies of OPA anhydrolase from the squid, Loligo pealei, report that the enzyme has a molecular weight near 26 kDa, despite the common observation that SDS-PAGE experiments do not support this conclusion. Recent results from protein sequencing and cloning experiments now suggest that the enzyme found in squid hepatopancreas has a molecular weight of about 42 kDa. The enzyme easily degrades into two fragments of 16 kDa and approximately 26 kDa. N-terminal sequence analyses of the intact enzyme and the 16 kDa fragment blotted from an SDS gel and sequenced from the blot have shown conclusively that the intact 42 kDa protein has a blocked N-terminus. Sequence data obtained previously are from the N-terminal portion of the 16 kDa fragment. Additional support for this interpretation has been obtained from PCR analysis of L. pealei mRNA and cDNA. The partial (30 residue) sequence presented here reveals no indication of similarity to any other OPA anhydrolase or aryldialkylphosphatase (EC 3.1.8.1.).

Amino Acid Sequence↗

Comparison of organophosphorous acid anhydrolases from different species using monoclonal antibodies.

1. Monoclonal antibodies were raised against squid hepatopancreas organophosphorous acid (OPA) anhydrolase (EC 3.1.8.2) and were used to study structural similarities with OPA anhydrolases isolated from different sources. 2. Common epitopes were identified in OPA anhydrolases with diverse origins, and with different substrate specificities. 3. Epitopes unique to the squid hepatopancreas OPA anhydrolase were identified; optic ganglion and hepatopancreas contain different enzymes which can be distinguished by their epitopes.

Animals↗

A high-performance liquid chromatographic procedure for the purification of mouse monoclonal antibodies.

High-performance liquid chromatography was applied to the purification of monoclonal antibodies from mouse ascites fluid. The method was based on anion-exchange chromatography using a TSK DEAE-5PW column and a gradient elution with 20 mM Tris, pH 8.5, and 20 mM Tris, pH 8.5, containing 2.0 M sodium acetate. The method can be applied to analytic or preparative scale separations. Purified immunoglobulins were isolated from samples of 20 to 100 microliter containing up to 19 mg total protein. The average recovery of total protein was 89 +/- 12%. Recovery of the immunoglobulins, based on recovery of immunological activity, was quantitative. In addition to separating the immunoglobulins from the other serum proteins, the various classes of IgG were resolved.

Animals↗