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Comprehensive computational assessment of ADME properties using mapping techniques.

One strategy to potentially improve the success of drug discovery is to apply computational approaches early in the process to select molecules and scaffolds with ideal binding and physicochemical properties. Numerous algorithms and different molecular descriptors have been used for modeling ligand-protein interactions as well as absorption, distribution, metabolism and excretion (ADME) properties. In most cases a single data set has been evaluated with one approach or multiple algorithms that have been compared for a single dataset. These models have been primarily evaluated by leave-one out analysis or boot strapping with groups representing 25-50% of the training set left out of the final model. In a very few examples a test set of molecules not included in the model has been used for an external evaluation. In the present study we have applied Sammon non-linear maps, Support Vector Machines and Kohonen Self Organizing Maps to modeling numerous datasets for ADME properties including human intestinal absorption, blood brain barrier permeability, cytochrome P450 binding, plasma protein binding, P-gp inhibition, volume of distribution and plasma half life.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Deletion of the murine Duffy gene (Dfy) reveals that the Duffy receptor is functionally redundant.

All of the antigenic determinants of the Duffy blood group system are in a glycoprotein (gp-Fy), which is encoded by a single-copy gene (FY) located on chromosome 1. gp-Fy is also produced in several cell types, including endothelial cells of capillary and postcapillary venules, the epithelial cell of kidney collecting ducts, lung alveoli, and the Purkinje cells of the cerebellum. This protein, which spans the cell membrane seven times, is a member of the superfamily of chemokine receptors and a malarial parasite receptor. The mouse Duffy gene (Dfy) homolog of human FY is also a single-copy gene, which maps in a region of conserved synteny with FY and produces a glycoprotein with 60% homology to the human protein. The mouse Duffy-like protein also binds chemokines. To study the biological role of gp-Fy, we generated a mouse strain in which Dfy was deleted. These homozygous Dfy(-/-) mice were indistinguishable in size, development, and health from wild-type and heterozygous littermates. We also examined components of the immune system and found no differences in lymph nodes or peripheral blood leukocyte levels between knockout and wild-type mice. The gross and histological anatomy of the thymus, spleen, lung, and brain showed no significant differences between mutants and wild-type mice. There was no indication of an overall difference between the knockout and wild-type mice in systematic neurological examinations. The only significant difference between Dfy(-/-) and Dfy(+/+) mice that we found was in neutrophil migration in peritoneal inflammations induced by lipopolysaccharide and thioglycolate. In mice homozygous for the deletion, there was less neutrophil recruitment into the peritoneal cavity and neutrophil influx in the intestines and lungs than in wild-type mice. Despite this, the susceptibility to Staphylococcus aureus infection was the same in the absence and in the presence of gp-Fy. Our results indicate that gp-Fy is functionally a redundant protein that may participate in the neutrophil migratory process.

Alleles↗

Differential phosphorylation of sites in the linker region of P-glycoprotein by protein kinase C isozymes alpha, betaI, betaII, gamma, delta, epsilon, eta, and zeta.

To determine whether individual protein kinase C (PKC) isozymes differentially phosphorylate sites in the linker region of human P-glycoprotein (P-gp), we used a synthetic peptide substrate, PG-2, exactly corresponding to amino acid residues spanning the region 656-689 of the multidrug resistance gene (MDRI). All tested PKC isozymes phosphorylated PG-2. The maximum phosphate incorporation by calcium-dependent PKC isozymes alpha, betaI, betaII, and gamma was 3, 2, 2, and 3 mol phosphate/mol PG-2, respectively. The maximum phosphate incorporation by calcium-independent isozymes delta, epsilon, eta, and zeta was 1.5, 0.5, 1.5, and 1.5 mol phosphate/mol PG-2, respectively. Two-dimensional tryptic phosphopeptide mapping indicated differential phosphorylation of the PKC consensus sites Ser-661, Ser-667, and Ser-671 by individual isozymes, which may be functionally significant. These data suggest that differential phosphorylation by PKC isoenzymes of PKC sites within the P-gp linker region may play a role in modulating P-gp activity.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Inhibition of interleukin-6-activated janus kinases/signal transducers and activators of transcription but not mitogen-activated protein kinase signaling in liver of endotoxin-treated rats.

OBJECTIVES: Endotoxin-induced cytokines, such as interleukin-6, mediate systemic inflammatory responses through multiple cellular signaling pathways. Interleukin-6 is also responsible for the synthesis of acute phase proteins. Recent studies have shown that endotoxin can inhibit signal transducers and activators of transcription (STAT)-3 tyrosine phosphorylation in cultured cells, suggesting that this effect may limit the synthesis of acute phase proteins. The purpose of this study was to examine the effects of endotoxin on interleukin-6 activation of STATs and mitogen-activated protein (MAP) kinase pathways in rat liver in vivo. DESIGN: Controlled laboratory study. SETTING: Medical school laboratory. SUBJECTS: Specific pathogen-free male Sprague Dawley rats. INTERVENTIONS: Under anesthesia, interleukin-6 was injected into the portal vein of rats 4 hrs after the bolus intravenous administration of endotoxin (1 mg/kg) or saline. The effects of interleukin-6 on key intermediates in early steps of the interleukin-6 signaling pathway, including janus kinase-1, gp 130, the interleukin-6 receptor, STAT1, and STAT3, were examined in both saline and endotoxin-treated rats. MEASUREMENTS AND MAIN RESULTS: In endotoxin-treated rats, there was significant inhibition of interleukin-6 activation of janus kinase-1, gp 130, the interleukin-6 receptor, STAT1, and STAT3. These signaling changes were associated with decreased tissue abundance of interleukin-6 receptors and STAT3. In contrast to its effects on the janus kinase/STAT pathways, interleukin-6 activation of MAP kinases (extracellular signal-regulated kinase-1, extracellular signal-regulated kinase-2, and p38) was unaffected by endotoxin. CONCLUSIONS: The pathway-specific inhibition of interleukin-6 signaling responses in the liver may be an important determinant of the pathophysiologic consequences of endotoxin exposure.

Animals↗

Movement discrimination by single cells in the human pallidum characterised by hidden Markov models.

In patients undergoing pallidotomy for Parkinson's disease, we recorded extracellularly from single neurons in the two internal segments (GPii, GPie) and the external segment (GPe) of the globus pallidus (GP) in response to active (cued) movements of the contralateral wrist, elbow or ankle. The patterns of cell activity occurring both before and after movement onset were analysed using hidden Markov models (HMMs) and clustered by movement type using the generative topographical mapping algorithm. Cluster separation was quantified in order to measure a cell's ability to discriminate between movements. Statistical analysis of variance indicated a significant regional gradient (GPii > GPie > GPe) of movement discrimination, while cells in all regions differentiated better between movements of different joints (wrist, elbow or ankle) than between flexion and extension of the same joint. We found that GP cells generally showed distinguishable firing patterns corresponding to more than one type of movement per cell, in support of the hypothesis that cells in these regions of the basal ganglia are not involved in preparation or execution of a single type of movement but participate in many different movements, analogous to the hidden units of a neural network. Our results also indicate that cell activity both preceding a movement and during its execution may be modelled by HMMs with only a small number of states.

Action Potentials↗

Barriers in the care of patients who have experienced a traumatic event: the perspective of general practice.

BACKGROUND: Previous research has indicated that GPs encounter barriers in the care of patients who have experienced a traumatic event. OBJECTIVES: The aims of the present study were to map barriers GPs encounter in the care of patients who experience a traumatic event and solutions for these barriers, and to estimate the influence of GP characteristics on the number of barriers experienced. METHODS: Telephone interviews were conducted among a sample of 500 Dutch GPs stratified by sex. Topics covered barriers in the care of victims of: accidents, incest in the past, ongoing physical or sexual abuse of adults, and ongoing physical or sexual abuse of children. RESULTS: The response rate was 44%. GPs are regularly confronted with patients who have experienced a traumatic event. GPs experience 10% barriers in care of patients who have difficulties getting over an accident, 13% in the care of incest victims, 16% in the care of adults who are physically or sexually abused, and 20% in the care of physically or sexually abused children. Most of the GPs recently updated their knowledge of care of victims of traumatic events, but still the majority feel in need of additional expert training. CONCLUSION: GPs experience the greatest number of barriers in the care of children who are abused. GP characteristics were not related to the number of barriers. However, seeing more victims was related to fewer barriers. To facilitate GP care of victims of traumatic events, GP training and continuing medical education should focus especially on skills education regarding the detection and initial treatment of traumatic events of ongoing physical or sexual abuse.

Accidents↗

Genetic characterization and molecular mapping of Hessian fly resistance genes derived from Aegilops tauschii in synthetic wheat.

Two synthetic hexaploid wheat lines (xAegilotriticum spp., 2n = 6x = 42, genomes AABBDD), SW8 and SW34, developed from the crosses of the durum wheat cultivar Langdon (Triticum turgidum L. var. durum, 2n = 4x = 28, genomes AABB) with two Aegilops tauschii Cosson accessions (2n = 2x = 14, genome DD), were determined to carry Hessian fly [Mayetiola destructor (Say)] resistance genes derived from the Ae. tauschii parents. SW8 was resistant to the Hessian fly biotype Great Plains (GP) and strain vH13 (virulent to H13). SW34 was resistant to biotype GP, but susceptible to strain vH13. Allelism tests indicated that resistance genes in SW8 and SW34 may be allelic to H26 and H13 or correspond to paralogs at both loci, respectively. H26 and H13 were localized to chromosome 4D and 6D, respectively, in previous studies. Molecular mapping in the present study, however, assigned the H26 locus to chromosome 3D rather than 4D. On the other hand, mapping of the resistance gene in SW34 verified the previous assignment of the H13 locus to chromosome 6D. Linkage analysis and physical mapping positioned the H26 locus to the chromosomal deletion bin 3DL3-0.81-1.00. A linkage map for each of these two resistance genes was constructed using simple sequence repeat (SSR) and target region amplification polymorphism (TRAP) markers.

Alleles↗

Mutational analysis of the P-glycoprotein first intracellular loop and flanking transmembrane domains.

The role of individual intracellular (IC) loops linking transmembrane (TM) domains in P-glycoprotein (P-gp) function remains largely unknown. The high degree of sequence conservation of these regions in the P-gp family and other ABC transporters suggests an important role in a common mechanism of action of these proteins. To gain insight into this problem, we have randomly mutagenized a portion of TM2, the entire IC1 loop, TM3, the entire extracellular loop (EC2), and part of TM4, and analyzed the effect of such mutations on P-gp function. Random mutagenesis was carried out using Taq DNA polymerase and dITP under conditions of low polymerase fidelity, and the mutagenized segments were reintroduced in the full length mdr3 cDNA by homologous recombination in the yeast Saccharomyces cerevisiae strain JPY201. The biological activity of mutant P-gp variants was analyzed in yeast by their ability to confer cellular resistance to the antifungal drug FK506 and the peptide ionophore valinomycin, and by their ability to complement the yeast Ste6 gene and restore mating in a yeast strain bearing a null mutation [Raymond, M., et al. (1992) Science 256, 232-4] at this locus. The analysis of 782 independent yeast transformants allowed the identification of 49 independent mutants bearing single amino acid substitutions in the mutagenized segment resulting in an altered P-gp function. The mutants could be phenotypically classified into two major groups, those that resulted in partial or complete overall loss of function and those that seemed to affect substrate specificity. Several of the mutants affecting overall activity mapped in IC1; in particular we identified a segment of four consecutive mutation sensitive residues (TRLT, positions 169-172) with such a phenotype. On the other hand, we identified a cluster of mutants affecting substrate specificity within the short EC2 segment and in the adjacent portion of the neighboring TM4 domain. Expression and partial purification of a representative subset of these mutants showed that in all but two cases, loss of function was associated with loss of drug-induced ATPase activity of P-gp. Therefore, it appears that TM domains, IC and EC loops, are structurally and functionally tightly coupled in the process of drug stimulatable ATPase characteristic of P-gp.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

How are policy makers using evidence? Models of research utilisation and local NHS policy making.

STUDY OBJECTIVE: This paper is based on a qualitative study that aimed to identify factors that facilitate or impede evidence-based policy making at a local level in the UK National Health Service (NHS). It considers how models of research utilisation drawn from the social sciences map onto empirical evidence from this study. DESIGN: A literature review and case studies of social research projects that were initiated by NHS health authority managers or GP fundholders in one region of the NHS. In depth interviews and document analysis were used. SETTING: One NHS region in England. PARTICIPANTS: Policy makers, GPs and researchers working on each of the social research projects selected as case studies. MAIN RESULTS: The direct influence of research evidence on decision making was tempered by factors such as financial constraints, shifting timescales and decision makers' own experiential knowledge. Research was more likely to impact on policy in indirect ways, including shaping policy debate and mediating dialogue between service providers and users. CONCLUSIONS: The study highlights the role of sustained dialogue between researchers and the users of research in improving the utilisation of research-based evidence in the policy process.

England↗

Purification and characterization of the apically secreted 80 KDa glycoprotein from Madin-Darby canine kidney (MDCK) cells.

An 80 KDa glycoprotein (gp 80), known to be released predominantly from the apical surface by filter-grown Madin-Darby canine kidney cells, was purified to electrophoretic homogeneity. Purified gp 80 was found to have a disulfide-bonded dimeric structure, and appeared to exist in two molecular forms, a major (high-molecular weight) form consisting of a 46 KDa subunit and a 39 KDa subunit and a minor (low-molecular weight) form consisting of a 46 KDa subunit and a 33 KDa subunit. Upon de-glycosylation by N-glycanase treatment, the 46 KDa subunit was converted to a 25.6 KDa form, whereas both the 39 KDa and the 33 KDa subunit gave rise to a 21.1 KDa form. V8 protease mapping of deglycosylated polypeptides revealed the 39 KDa and the 33 KDa subunit to have nearly identical band patterns, which also exhibited a high degree of homology to that derived from the 46 KDa subunit. Radioimmunoassays revealed that the binding of the purified gp 80 to fibrinogen (or heparin) was dependent on both pH and divalent cations. Furthermore, binding of gp 80 to immobilized fibrinogen (or heparin) was inhibited in the presence of free fibrinogen (or heparin) added in the assay mixture.

Amidohydrolases↗

von Willebrand factor: structure and function.

Von Willebrand factor (vWF) is an adhesive, multimeric glycoprotein present in plasma, platelets, and subendothelium, which has two main functions: (1) it serves as a carrier for factor VIII and (2) it plays a crucial role in platelet adhesion to subendothelium, acting as a "bridge" between platelet membrane glycoprotein (GP) Ib and GP IIb/IIIa and subendothelial components such as collagen and heparin. vWF is involved at high shear rates in the initial contact of platelets with the subendothelium, in their subsequent spreading, and in thrombus formation. The three pools of vWF (plasma, platelets, and subendothelium) are necessary for optimal adhesion. Specific fragments of vWF involved in binding to platelets, collagen, heparin, and factor VIII have been mapped by using a series of proteases and well-characterized monoclonal antibodies to distinct epitopes of vWF. Several groups, including ours, have identified at least eight functional domains on the 270-kd subunit that consists of 2,050 amino acids. The importance of the binding domains to GP Ib and to collagen is illustrated by the role of vWF fragment SpIII (amino acids 1 through 1,365) in promoting platelet adhesion to collagen. The role of the vWF-GP Ib axis and of the vWF-GP IIb/IIIa axis in platelet-vessel wall interactions has been demonstrated through the study of patients, monoclonal antibodies, recombinant fragments, and synthetic peptides. We have recently expressed fragments of vWF complementary DNA in Escherichia coli. One of these recombinant fragments, which spans amino acids 449 through 730, binds to platelets in the presence of ristocetin, to collagen, and to heparin and has the property of inhibiting ristocetin-induced platelet agglutination. The second fragment, which spans amino acids 914 through 1,364, binds to collagen.(ABSTRACT TRUNCATED AT 250 WORDS)

Blood Platelets↗

Preliminary structural characterization of the leukocyte cell surface molecule recognized by monoclonal antibody TA-1.

TA-1 is a monoclonal antibody identifying a cell surface molecule with a broad distribution on normal and malignant human leukocytes. Preliminary structural studies performed by using radioimmunoprecipitation and sodium dodecyl sulfate polyacrylamide gel electrophoresis indicated that TA-1 recognizes a two-chain polypeptide of approximately 170 kilodaltons (KD) and 95 KD under reducing conditions. The same experiment conducted under nonreducing conditions yielded bands of approximately 155 KD and 110 KD, suggesting the existence of intrachain disulfide bonds in both subunits. Both polypeptide chains were labeled with tritiated sodium borohydride after treatment of cells with neuraminidase and galactose oxidase, thereby demonstrating that both were glycosylated. Tryptic peptide mapping indicated that the 170-KD and 95-KD subunits did not have significant homology in peptide composition. We are designating this newly defined human leukocyte bimolecular complex gp 170/95.

Antibodies, Monoclonal↗

Neurophysiological properties of pallidal neurons in Parkinson's disease.

Neuronal properties of the human globus pallidus (GP) are not known. Since GP is the major output of the basal ganglia, it may be involved in the pathophysiology of Parkinson's disease. We studied 12 patients with medically resistant Parkinson's disease by using single cell recording of the GP during stereotaxic pallidotomy to define neuronal firing rate and its modulation during active and passive movements. Different frequency and pattern of single cell activity was found in globus pallidus externus compared with globus pallidus internus. Discharge rates of 19% of GP cells were modulated by passive contralateral movements. Pallidal units were most often related solely to single joint movement. Different patterns of activity in relation to the two different movements of the same joint were often observed. We identified somatotopically arranged cell clusters that alter discharge rate with related movements. These findings suggest at least a partial somatotopic organization of the human GP and similarity with experimental results in both healthy and MPTP monkeys, providing a rationale for surgical or pharmacological targeting of GP for treating Parkinson's disease.

Brain Mapping↗

Dopamine release in the rat globus pallidus characterised by in vivo microdialysis.

Brain microdialysis has been used to examine the in vivo effects of potassium and calcium on dopamine release in the dorsal globus pallidus (GP) of rats. Furthermore, the effects of food presentation and consumption on dopamine release in the GP were investigated. Basal dopamine levels in the GP were below the detection limit, therefore nomifensine (30 microM) was added to the perfused artificial cerebrospinal fluid (aCSF). A prominent increase of dopamine release to 370% was observed after perfusion with elevated potassium (100 mM), while perfusion with calcium-free aCSF produced a significant decrease of dopamine efflux to 36% of control levels. Furthermore, presentation and consumption of food resulted in a rapid increase of extracellular dopamine to 130%. The present experiments demonstrate that in the GP extracellular dopamine can be measured by in vivo brain microdialysis. The data suggest that the dopamine release in the GP can be stimulated by a depolarising agent and involves a partially calcium-dependent release mechanism. The data further suggest that dopamine in basal ganglia structures downstream the striatum as the GP is involved in signalling of important stimuli in the environment, e.g. food.

Animals↗

HIV-1 tropism for mononuclear phagocytes can be determined by regions of gp120 outside the CD4-binding domain.

Cells of the mononuclear phagocyte system are the predominant cell producing HIV-1 in most tissues including the central nervous system (CNS), spinal cord, lung and skin; infection is associated with dementia, neuropathy, pneumonitis, and dermatitis respectively. Different HIV-1 isolates vary markedly in their ability to infect mononuclear phagocytes productively. Here we describe molecular clones of a CNS-derived isolate, HIV-1(JR-FL), which can replicate efficiently in mononuclear phagocytes. Analysis by polymerase chain reaction of early events after infection indicates that the early phase of viral replication before reverse transcription determines tropism. Genetic mapping of the macrophage-tropic phenotype by construction of recombinant viruses indicates that mononuclear phagocyte infectivity can be determined by a 157-amino-acid region of the gp 120 glycoprotein of HIV-1(JR-FL). Significantly, this region is upstream from the previously defined CD4-binding domain. We propose that at least one determinant for mononuclear phagocyte tropism involves target cell interactions with regions of gp120 distinct from the CD4-binding domain.

AIDS Dementia Complex↗

Neutralizing epitopes of lymphocytic choriomeningitis virus are conformational and require both glycosylation and disulfide bonds for expression.

Lymphocytic choriomeningitis virus (Armstrong strain) bears two overlapping epitopes, GP-1A (A) and GP-1D (D), recognized by neutralizing antibodies on the major surface glycoprotein GP-1. Both are discontinuous conformational epitopes that require prior formation of disulfide bridges and addition of N-linked oligosaccharides. Using monoclonal antibodies specific for each of these epitopes, as well as for conformation-independent epitopes, we have investigated the requirements for biosynthesis and folding of the epitopes. The carbohydrate residues themselves do not appear to comprise critical informational components of these epitopes, but are required for proper folding of the nascent glycopeptide chain within the rough endoplasmic reticulum. These epitopes differ in their resistance to denaturation; epitope D is retained when denatured with SDS under nonreducing conditions, whereas epitope A is lost. Monoclonal antibodies to epitope A cross-react with several strains of LCMV. However, epitope D is detected in only a subset of isolates derived from the Armstrong strain of LCMV. By RNA sequence analysis, we have mapped a single amino acid change distinguishing those virions containing epitope D. Acquisition of binding activity of the epitope D-specific monoclonal correlates with a Thr----Ala or Thr----Lys mutation at amino acid 173 of the GP-1 molecule and concomitant disruption of a consensus N-linked glycosylation site.

Amino Acid Sequence↗

In vitro cleavage of the concatemer joint of bacteriophage T3 DNA.

Mature DNA from phage T3 or T7 is a linear duplex DNA with direct repeats at its ends known as "terminally redundant sequences." The DNA of these phages is synthesized as concatemers in which unit length molecules are joined together in a head-to-tail fashion through the terminally redundant sequences and processed to form mature DNA with coupling to DNA packaging. When linearized plasmid DNA carrying a concatemer joint, a terminally redundant sequence and its flanking sequences from the concatemer, was incubated in a defined in vitro system for packaging T3 DNA, composed of purified proheads and packaging proteins (gp 18 and gp 19), DNA was cleaved at the left end of the terminally redundant sequence. The cleavage reaction required all factors necessary for DNA packaging. The DNA fragment with the left end was preferentially protected from DNase I digestion, indicating that the cleavage reaction occurs at the left end of the terminally redundant sequence in the concatemer when DNA is packaged leftward, corresponding to the direction from the right to the left end of the T3 genome. The cleavage reaction was stimulated by high concentrations of NaCl and ATP, a condition in which DNA translocation into the head is slowed down. The cleavage reaction was not specific between T3 and T7. The right end of the concatemer joint was not required for cleavage at the left end. In the absence of ATP, DNA was extensively degraded by gp 19. gp 19 by itself had nonspecific endonuclease activity, making double-stranded breaks. The activity was inhibited by either ATP or gp 18.

DNA, Viral↗

Classification of substrates and inhibitors of P-glycoprotein using unsupervised machine learning approach.

P-glycoprotein (P-gp), a drug efflux pump, affects the bioavailability of therapeutic drugs and plays a potentially important role in clinical drug-drug interactions. Classification of candidate drugs as substrates or inhibitors of the carrier protein is of crucial importance in drug development. Accurate classification is difficult to achieve due to two major factors: i. The extreme diversity of substrates and the presence of multiple binding sites complicate the understanding of the mechanisms behind and hinder the development of a true, conclusive quantitative structure-activity relationship (QSAR) for P-gp substrates. ii. Both inhibitors and substrates interact with the same binding site of P-gp, as a result, it is not surprising that both share many common structural features. In this work, an unsupervised machine learning approach based on the Kohonen self-organizing maps (SOM) was explored, which incorporated a predefined set of physicochemical descriptors encoding the key molecular properties capable of discerning a substrate from an inhibitor. The SOM model can discriminate between substrates and inhibitors with an average accuracy of 82.3%. The current results show that the SOM-based method provides a potential in silico model for virtual screening.

ATP Binding Cassette Transporter, Subfamily B, Mem↗