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Biomedical subjects

T S Harvey

Publications and source records attributed to T S Harvey.

12 recordsLinked to original sources

The three-dimensional structure of the tenth type III module of fibronectin: an insight into RGD-mediated interactions.

The solution structure of the tenth type III module of fibronectin has been determined using nuclear magnetic resonance techniques. The molecule has a fold similar to that of immunoglobulin domains, with seven beta strands forming two antiparallel beta sheets, which pack against each other. Both beta sheets contribute conserved hydrophobic residues to a compact core. The topology is more similar to that of domain 2 of CD4, PapD, and the extracellular domain of the human growth hormone receptor than to that of immunoglobulin C domains. The module contains an Arg-Gly-Asp sequence known to be involved in cell adhesion. This tripeptide is solvent exposed and lies on a conformationally mobile loop between strands F and G, consistent with its cell adhesion function.

Amino Acid Sequence

Human epidermal growth factor. High resolution solution structure and comparison with human transforming growth factor alpha.

The solution structure of the 53 amino acid peptide hormone, human epidermal growth factor (hEGF), has been determined to high resolution from nuclear magnetic resonance (n.m.r.) data. A large number of internuclear distance and dihedral restraints was obtained, including data from uniformly 15N-labelled hEGF. Dynamical simulated annealing methods using the program XPLOR were used for structure calculation. An improved protocol was developed combining efficient conformational searching at a reduced computational cost. The general fold of the calculated structures compared well with that of a derivative of the carboxy-terminally truncated hEGF determined previously. A group of 44 structures were calculated with no violations greater than 0.3 A and 3 degrees for distance and dihedral restraints, respectively. The average pairwise root mean square (r.m.s.) deviation of all backbone atoms for these structures was 2.25 A for all 53 residues, 0.92 A for the bulk of the protein, and 0.23 A for the functionally important carboxy-terminal domain. Two new helical segments containing highly conserved amino acids have been identified; one between cysteines 6 and 14 and a second at the end of the carboxy-terminal domain. New insight into the molecular architecture of the site of putative receptor binding was provided by comparing the structure of hEGF with its biologically equipotent analogue, human transforming growth factor alpha. This comparison revealed a close structural relationship between the two growth factors and provides an improved understanding of the structure/function relationships in EGF.

Amino Acid Sequence

Solution structure of the fibrin binding finger domain of tissue-type plasminogen activator determined by 1H nuclear magnetic resonance.

The amino acid sequence of the first domain of tissue-type plasminogen activator (t-PA) includes eight residues that are highly conserved in the type 1 finger domains found in human fibronectin. A construct comprising 50 residues from this finger domain of t-PA has been expressed and its solution structure has been determined by two-dimensional nuclear magnetic resonance spectroscopy. A total of 782 experimental restraints consisting of 723 interproton distances derived from nuclear Overhauser effect measurements, 43 torsion angles, and 16 hydrogen bond restraints were used as the input for dynamical simulated annealing structure calculations. Twenty-eight structures were obtained that satisfied the experimental data with no single distance violation greater than 0.3 A. The average atomic root-mean-square distribution for the backbone atoms of the final structures was 0.41 (+/- 0.13) A for the well defined part of the structure (residues 4 to 47). The overall fold of the t-PA finger domain shows a striking similarity to that of the seventh type 1 repeat of human fibronectin with the side-chains of conserved residues lying in similar conformations. One significant difference between the two molecules is that hydrophobic residues cover the exposed surface of the principal beta-sheet region in the t-PA finger domain. It is suggested that one face of this region may interact with parts of the complete t-PA protein.

Amino Acid Sequence

The three-dimensional structure of the first EGF-like module of human factor IX: comparison with EGF and TGF-alpha.

The three-dimensional structure of the first epidermal growth factor (EGF)-like module from human factor IX has been determined in solution using two-dimensional nuclear magnetic resonance (in the absence of calcium and at pH 4.5). The structure was found to resemble closely that of EGF and the homologous transforming growth factor-alpha (TGF-alpha). Residues 60-65 form an antiparallel beta-sheet with residues 68-73. In the C-terminal subdomain a type II beta-turn is found between residues 74 and 77 and a five-residue turn is found between residues 79 and 83. Glu 78 and Leu 84 pair in an antiparallel beta-sheet conformation. In the N-terminal region a loop is found between residues 50 and 55 such that the side chains of both are positioned above the face of the beta-sheet. Residues 56-60 form a turn that leads into the first strand of the beta-sheet. Whereas the global fold closely resembles that of EGF, the N-terminal residues of the module (46-49) do not form a beta-strand but are ill-defined in the structure, probably due to the local flexibility of this region. The structure is discussed with reference to recent site-directed mutagenesis data, which have identified certain conserved residues as ligands for calcium.

Amino Acid Sequence

The solution structure of human transforming growth factor alpha.

The solution structure of transforming growth factor alpha has been determined by a combination of high-resolution 1H-nuclear magnetic resonance and distance geometry and restrained molecular dynamics. The 382 restraints derived from the NMR experiments were used to calculate many distance geometry structures, which were then refined by restrained molecular mechanics. Five of these structures were further refined using a variety of methods. Comparison of independently measured parameters, such as calculated hydrogen bonding patterns and experimental amide exchange rates, have been used to evaluate the accuracy of the structures. Also, possible mechanisms to explain the pH-dependent conformational interconversion observed are suggested. Finally comparisons between this work and others on this topic have been made.

Amino Acid Sequence

Solution structure of human insulin-like growth factor 1: a nuclear magnetic resonance and restrained molecular dynamics study.

The solution structure of human insulin-like growth factor 1 has been investigated with a combination of nuclear magnetic resonance and restrained molecular dynamics methods. The results show that the solution structure is similar to that of insulin, but minor differences exist. The regions homologous to insulin are well-defined, while the remainder of the molecule exhibits greater disorder. The resultant structures have been used to visualize the sites for interaction with a number of physiologically important proteins.

Amino Acid Sequence

Contribution of proline-14 to the structure and actions of melittin.

The structure and dynamic properties of bee venom melittin and a synthetic analogue, [Ala14]-melittin (melittin P14A), are compared, using high resolution 1H nuclear magnetic resonance (NMR) spectroscopy and amide exchange measurements in methanol. P14A is shown to adopt a regular, stable alpha-helical conformation in solution without the flexibility around the Pro-14 residue found in melittin. P14A has twice the hemolytic activity of melittin but is less able to induce voltage-dependent ion conductance in planar bilayers. The results indicate that helix flexibility afforded by the Pro-14 residue promotes the ability of melittin to adopt the transbilayer associates thought to underlie ion translocation.

Alanine

Solution structure of human calcitonin gene-related peptide by 1H NMR and distance geometry with restrained molecular dynamics.

The structure of human calcitonin gene-related peptide 1 (hCGRP-1) has been determined by 1H NMR in a mixed-solvent system of 50% trifluoroethanol/50% H2O at pH 3.7 and 27 degrees C. Complete resonance assignment was achieved by using two-dimensional methods. Distance restraints for structure calculations were obtained by semiquantitative analysis of intra- and interresidue nuclear Overhauser effects; in addition, stereospecific or X1 rotamer assignments were obtained for certain side chains. Structures were generated from the distance restraints by distance geometry, followed by refinement using molecular dynamics, and were compared with experimental NH-C alpha H coupling constants and amide hydrogen exchange data. The structure of hCGRP-1 in this solvent comprises an amino-terminal disulfide-bonded loop (residues 2-7) leading into a well-defined alpha-helix between residues 8 and 18; thereafter, the structure is predominantly disordered, although there are indications of a preference for a turn-type conformation between residues 19 and 21. Comparison of spectra for the homologous hCGRP-2 with those of hCGRP-1 indicates that the conformations of these two forms are essentially identical.

Amino Acid Sequence

Percutaneous catheter drainage of pancreatic pseudocysts.

Pancreatic pseudocysts represent a complication of severe pancreatic inflammatory disease. Although operative drainage is the cornerstone of therapy for pseudocysts, we have undertaken percutaneous catheter drainage in a selected group of 28 patients over a six-year period (1982-88). This represents 42 per cent of pseudocyst patients managed by the senior author and 1.7 per cent of admissions for pancreatitis at the Medical University Hospitals during that period of time. There were 26 men and two women with an age range of 26-66 years (mean = 42.1). Twenty-six patients had alcohol abuse as the cause of pancreatitis; two were due to surgical trauma. Nondilated pancreatic ducts were demonstrated in 25 patients. Six had pancreatic ascites associated with pseudocysts. Four had previous operative drainage (2 internal and 2 external drainage procedures). Five patients received octreotide acetate, a synthetic peptide which mimics the action of somatostatin, in an attempt to aid closure of external fistulas. The mean length of catheter drainage was 48 days (range 7-210 days). Eight (29%) patients developed procedure-related complications (1 pneumothorax, 1 sheared guidewire, six drain tract infections). There was no mortality. Successful resolution of pseudocysts was achieved in 26 patients (93%). Two patients subsequently had elective caudal pancreaticojejunostomy (CPJ), and one lateral pancreaticojejunostomy (LPJ) to drain obstructed pancreatic ducts. One patient has required repeat external drainage. Percutaneous external drainage is successful in pseudocyst eradication. When underlying pancreatic pathology remains uncorrected, elective surgical decompression of obstructed, dilated ducts may be necessary.

Adult

Structure-function relationships in epidermal growth factor (EGF) and transforming growth factor-alpha (TGF-alpha).

The solution structures of the homologous growth factors human epidermal growth factor (hEGF) and human transforming growth factor-alpha (hTGF-alpha), as determined by high resolution NMR and various computational methods, are described. Knowledge of these structures and the sequences of other homologous proteins leads to predictions about growth factor residues which may be involved in the receptor/ligand interface. Recent experiments designed to check these predictions are described briefly. These involve site-specific mutagenesis, receptor binding assays and high resolution NMR studies.

Amino Acid Sequence

Percutaneous catheter drainage of infected pancreatic and peripancreatic fluid collections.

Operative drainage is the cornerstone of therapy for pancreatic abscess. Recently it has been suggested that successful percutaneous catheter drainage of infected pancreatic and peripancreatic fluid collections may serve as definitive therapy. We undertook therapeutic, computed tomography-directed percutaneous drainage in a selected group of 29 patients with infected pancreatic and peripancreatic fluid collections. Twenty-three patients (79%) were successfully treated with percutaneous drainage. Of six patients (21%) representing failures of percutaneous drainage, four died and two recovered after operative drainage. The four patients who died had a mean APACHE (acute physiology and chronic health evaluation) II score of 23 and five of Ranson's prognostic signs. Ranson's signs and APACHE II scores were predictive of success and mortality. We conclude that in selected patients, infected pancreatic and peripancreatic fluid collections can be treated definitively with therapeutic percutaneous catheter drainage. Based on this experience, recommendations regarding patient selection are included.

Abscess

The solution structures of epidermal growth factor and transforming growth factor alpha.

The structures of human epidermal growth factor (EGF) and human transforming growth factor alpha (TGF alpha) have been determined in solution using nuclear magnetic resonance techniques. The features of each structure are described and similarities and differences between them are discussed. The structures are combined with information from sequence homologies to produce a model of the receptor-recognition sites of EGF and TGF alpha, which can be tested in a site-directed mutagenesis programme. The model assists in explaining previous observations of sequence-activity relationships. The TGF alpha and EGF structures also serve as models for homologous modules in other extracellular proteins.

Amino Acid Sequence