Search PubMedSearch

Biomedical subjects

M R Jackson

Publications and source records attributed to M R Jackson.

At least 19 recordsLinked to original sources

Cloning and expression of a rat liver phenobarbital-inducible UDP-glucuronosyltransferase (2B12) with specificity for monoterpenoid alcohols.

A full-length cDNA, HBPA2, that encodes for a new rat hepatic UDP-glucuronosyltransferase protein, designated UGT2B12, was isolated from a rat liver cDNA library. The isolated clone contains a 1590-nucleotide open reading frame flanked by 2 and 252 base pairs of 5' and 3' noncoding sequences, respectively. Human embryonic kidney 293 cells transfected with UGT2B12 expressed a protein with a subunit molecular mass of 53 kDa. The expressed protein catalyzed the glucuronidation of monoterpenoid alcohols, such as (-)-borneol, (+)-menthol, and (-)-nopol. In addition, a number of simple phenolic compounds, such as hydroxybiphenyls, 7-hydroxylated coumarins, p-nitrophenol, and food-derived substances (e.g., naringenin and eugenol), were also substrates for the expressed enzyme. Northern blot analysis showed that treatment of rats with phenobarbital increased hepatic mRNA levels for UGT2B12 approximately twofold. In addition to liver, Northern blot analysis demonstrated that UGT2B12 mRNA is present in kidney and testis.

Alcohols

A role for acidic residues in di-leucine motif-based targeting to the endocytic pathway.

Recent reports have suggested that major histocompatibility complex class II molecules load peptide through a specialized compartment of the endocytic pathway and are targeted to this pathway by association with invariant chain (Iip31). Therefore we used a site-directed mutagenesis approach to determine whether Iip31 possesses novel protein targeting signals. Our results indicate that two di-leucine-like pairs mediate Iip31 targeting and that an acidic amino acid residue four or five residues N-terminal to each Iip31 di-leucine-like pair is required for endocytic targeting. Results from additional testing with hybrid Iip31 molecules indicate that the acidic residues N-terminal to di-leucine pairs are critical for accumulation of these molecules in large endocytic vesicles and in some cases provide a structure favorable for internalization. The acidic residues N-terminal to di-leucine pairs are important in some sequence contexts in providing a structure favorable for internalization, whereas in other contexts an acidic residue is critical for targeting to, and formation of, large endocytic vesicles. Although our results do not support the idea that Iip31 possesses unique protein targeting motifs, they do suggest that di-leucine motifs may be recognized as part of a larger secondary structure. In addition, our data imply that the targeting motif requirements for internalization may differ from the requirements for further transport in the endocytic pathway.

Amino Acid Sequence

Peptide binding and presentation by mouse CD1.

CD1 molecules are distantly related to the major histocompatibility complex (MHC) class I proteins. They are of unknown function. Screening random peptide phage display libraries with soluble empty mouse CD1 (mCD1) identified a peptide binding motif. It consists of three anchor positions occupied by aromatic or bulky hydrophobic amino acids. Equilibrium binding studies demonstrated that mCD1 binds peptides containing the appropriate motif with relatively high affinity. However, in contrast to classical MHC class I molecules, strong binding to mCD1 required relatively long peptides. Peptide-specific, mCD1-restricted T cell responses can be raised, which suggests that the findings are of immunological significance.

Amino Acid Sequence

The molecular chaperone calnexin binds Glc1Man9GlcNAc2 oligosaccharide as an initial step in recognizing unfolded glycoproteins.

Calnexin is a molecular chaperone that resides in the membrane of the endoplasmic reticulum. Most proteins that calnexin binds are N-glycosylated, and treatment of cells with tunicamycin or inhibitors of initial glucose trimming steps interferes with calnexin binding. To test if calnexin is a lectin that binds early oligosaccharide processing intermediates, a recombinant soluble calnexin was created. Incubation of soluble calnexin with a mixture of Glc0-3Man9GlcNAc2 oligosaccharides resulted in specific binding of the Glc1Man9GlcNAc2 species. Furthermore, Glc1Man5-7GlcNAc2 oligosaccharides bound relatively poorly, suggesting that, in addition to a requirement for the single terminal glucose residue, at least one of the terminal mannose residues was important for binding. To assess the involvement of oligosaccharide-protein interactions in complexes of calnexin and newly synthesized glycoproteins, alpha 1-antitrypsin or the heavy chain of the class I histocompatibility molecule were purified as complexes with calnexin and digested with endoglycosidase H. All oligosaccharides on either glycoprotein were accessible to this probe and could be removed without disrupting the association with calnexin. Furthermore, the addition of 1 M alpha-methyl glucoside or alpha-methyl mannoside had no effect on complex stability. These findings suggest that once complexes between calnexin and glycoproteins are formed, oligosaccharide binding does not contribute significantly to the overall interaction. However, it is likely that the binding of Glc1Man9GlcNAc2 oligosaccharides is a crucial event during the initial recognition of newly synthesized glycoproteins by calnexin.

Amino Acid Sequence

Phagocyte-induced antigen-specific activation of unprimed CD8+ T cells in vitro.

The strict segregation of the major histocompatibility complex (MHC) class I and class II loading pathways has been challenged by recent reports indicating that MHC class I molecules can acquire antigen in the phagocytic pathway. We now show that this alternative peptide loading pathway can be used efficiently to generate macrophages able to activate unprimed antigen-specific cytotoxic T cells in vitro. Short peptides (8-11 residues), administered in the phagocytic pathway at nanomolar concentrations, were found to be effective in specifically activating naïve cytotoxic T lymphocytes (CTL) in vitro, but longer peptides or whole protein antigen were not. Whole protein antigen coated on beads did, however, render macrophages susceptible to lysis by an antigen-specific CTL clone. This indicates that proteolysis in the phagocytic pathway has limited capability for class I-restricted presentation. We propose a model for class I loading in the phagocytic pathway consisting of direct trafficking of nascent MHC class I from the trans-Golgi network to the phagosome, prior to appearance at the cell surface, and the use of the narrow cavity between bead and phagosomal membrane as a peptide exchange/loading compartment. Targeting immunogenic class I-binding peptide to the phagocytic pathway of macrophages facilitates presentation in association with class I. This is a useful tool for CTL response induction in vitro.

Adsorption

Reduced placental villous tree elaboration in small-for-gestational-age pregnancies: relationship with umbilical artery Doppler waveforms.

OBJECTIVE: Our purpose was to investigate the three-dimensional architecture of placental villi from normal and growth-restricted fetuses and relate findings to umbilical artery blood flow velocity waveforms. STUDY DESIGN: Placentas from term (n = 15) and preterm (n = 5) appropriately grown and term (n = 9) and preterm (n = 7) growth-restricted fetuses (birth weight < 10th percentile) were examined to determine the number of arteries per stem villus and the three-dimensional configuration of the villous trees and their vessels. Umbilical blood flow before delivery was assessed by Doppler ultrasonography. The effects of age and growth restriction were determined by two-way analyses of variance. RESULTS: Growth restriction was associated with reduced large vessel wall thickness (p < or = 0.05) but no reduction in the number of these vessels per stem villus. The volumes and surface areas of intermediate and terminal villi were reduced (p < or = 0.001), especially in preterm growth-restricted cases, where a marked reduction in diastolic blood flow velocity was observed in the umbilical artery. CONCLUSIONS: Reduced villous development may contribute to abnormal umbilical artery blood flood flow, as assessed by Doppler ultrasonography, in some cases of intrauterine growth restriction.

Blood Flow Velocity

The effects of maternal aerobic exercise on human placental development: placental volumetric composition and surface areas.

The histomorphometry of term placentae from women who exercised regularly throughout either the first half or all of pregnancy was compared to that of placentae from matched controls to determine if regular exercise during pregnancy produced histomorphometric evidence of altered development and transport capacity. Conventional stereological techniques were used to estimate placental volumetric composition, surface areas, and villous and vascular configurations in the three groups. Exercise confined to early pregnancy increased the parenchymal component of the placenta, total vascular volume and site-specific capillary volume and surface area. Exercise throughout pregnancy increased these and multiple other histomorphometric parameters associated with the rate of placental perfusion and transfer function. However, significant changes were confined to villi > 80 microns in diameter. The localization of both the timing of the stimulus and the anatomical sites affected indicates that regular, sustained exercise modifies placental development primarily in early and mid-pregnancy. We speculate that the lack of significant changes in the structure and configuration of the smaller villi indicates that other adaptive mechanisms, such as increased rates of placental blood flow, must be well developed by the latter portion of the mid-trimester and adequately maintain fetal oxygenation and substrate delivery throughout the third trimester.

Adult

Inhibition of platelet deposition by combined hirulog and aspirin in a rat carotid endarterectomy model.

PURPOSE: Hirulog, a thrombin-specific inhibitor, has shown efficacy in reducing arterial thrombosis in patients treated with aspirin who require angioplasty or have unstable angina. In this study, the effect of hirulog on reducing deposition of indium 111-labeled platelets was assessed in a surgical model of aspirin-treated rats undergoing carotid endarterectomy. METHODS: Animals were randomly assigned to one of five groups: control (no aspirin or hirulog); aspirin alone (10 mg/kg); aspirin plus low-dose hirulog (0.2 mg/kg bolus followed by 0.5 mg/kg/hr); aspirin plus medium-dose hirulog (0.4 mg/kg bolus followed by 1.0 mg/kg/hr); or aspirin plus high-dose hirulog (0.6 mg/kg bolus followed by 1.5 mg/kg/hr). Hirulog was infused before surgery and continued until termination of the experiment 30 minutes after endarterectomy. RESULTS: Platelet deposition in rats receiving aspirin alone was reduced by 19% +/- 23% SE (p = 0.26) compared with controls. Deposition in aspirin-treated groups receiving low-, medium-, and high-dose hirulog decreased in a dose-dependent manner by 37% +/- 20% (p = 0.048), 44% +/- 19% (p = 0.061), and 56% +/- 13% (p = 0.022), respectively. As the dose of hirulog was increased, the plasma hirulog levels and activated partial thromboplastin time ratios (final:initial) also increased in a dose-dependent manner. The mean plasma hirulog levels ranged from 0.74 +/- 0.08 micrograms/ml in the low-dose hirulog group to 2.55 +/- 0.08 micrograms/ml in the high-dose hirulog group, and the corresponding activated partial thromboplastin time ratios were 1.5 +/- 0.12 (p = 0.001) and 3.3 +/- 0.63 (p = 0.001). Bleeding was easily controlled by local hemostatic measures for all experimental groups. CONCLUSION: Hirulog causes significant decrease in 111In-labeled platelet deposition in aspirin-treated rats subjected to microsurgical endarterectomy at doses that allow surgical hemostasis to be easily established.

Animals

Gamma delta T cells can recognize nonclassical MHC in the absence of conventional antigenic peptides.

Although T cells expressing the gamma delta Ag receptor (gamma delta cells) have been found in all organisms with lymphoid systems, little is understood about their immunologic function. It is known that T cells that express the alpha beta Ag receptor (alpha beta cells) fight infection by recognizing foreign Ag as peptide presented by MHC molecules; however, it is not known how gamma delta cells recognize Ag. Characterization of ligands of the gamma delta cell Ag receptor (TCR) could lead to a better understanding of gamma delta cell function. We have characterized the ligand of the G8 gamma delta cell; we find that G8 gamma delta cells are stimulated by T22, a nonclassical class I MHC molecule. To study the involvement of peptides in gamma delta cell recognition, T22 was expressed in cells deficient in peptide transporter function and in Drosophila cells, which can express MHC molecules without associated peptides. We find no evidence that G8 gamma delta cells recognize peptides bound to T22. These results suggest that some gamma delta cells, unlike alpha beta cells, may not be restricted to recognition of peptide-MHC complexes.

Animals

In vivo regulation of the assembly and intracellular transport of class I major histocompatibility complex molecules.

Using H-2Kb-transfected Balb/c 3T3 cells which generate "empty" H-2Kb molecules devoid of antigenic peptides, we show that peptide availability determines the stability of class I molecules and dictates the overall intracellular transport rate of the class I complexes. Our data also indicate that chaperonin-like proteins are involved in class I assembly. Using Drosophila cells transfected with H-2Kb and murine beta 2-microglobulin, we show that one possible candidate, calnexin, associates with class I molecules prior to peptide acquisition. These data suggest that both peptide supply and assembly proteins dictate cell surface expression of class I major histocompatibility complex molecules and ultimately influence T cell recognition. The role of beta 2-microglobulin in class I assembly is also discussed.

3T3 Cells

Localization of two angiogenic growth factors (PDECGF and VEGF) in human placentae throughout gestation.

The spatiotemporal distribution of two angiogenic growth factors, platelet-derived endothelial cell growth factor (PDECGF) and vascular endothelial growth factor (VEGF) were determined using immunohistochemistry on sections of human placentae from each trimester of pregnancy. In the first trimester PDECGF was detected in trophoblast and in a band in the centre of the villous core. During gestation staining spread throughout the stroma but began to weaken in trophoblast until, by term, it was found only in stroma and in some endothelial cells. VEGF was detected exclusively in cytotrophoblast during the first trimester and then in syncytiotrophoblast throughout the remainder of pregnancy. Western blot analysis revealed that PDECGF antisera bound to three bands approximately 27, 47 and 94 kDa. The lowest band was not detected in platelet lysate and may represent an alternatively processed form of this peptide in placenta. VEGF antisera bound strongly to bands approximately 36, 46, 54, 56 and 64 kDa. The intensity of most bands increased between the first and second trimesters, consistent with an increased level of angiogenesis as the placenta develops. The presence of both factors in trophoblast in early pregnancy may be indicative of the trophoblast playing an active role in influencing the development of the villous vascular network.

Blotting, Western

Quantitative measurement of alpha 6 beta 1 and alpha 6 beta 4 integrin internalization under cross-linking conditions: a possible role for alpha 6 cytoplasmic domains.

In epithelial cells integrins are segregated on discrete domains of the plasma membrane. Redistribution may also occur during migration or differentiation. However, little is known about the mechanisms that control such redistribution. Receptor internalization may be a part of one such mechanism. We developed a quantitative assay and measured internalization of two epithelial integrin heterodimers, alpha 6 beta 1 and alpha 6 beta 4, induced by cross-linking with specific antibodies. alpha 6 beta 1 is a receptor for EHS laminin, while alpha 6 beta 4 is a receptor for a component of the basement membrane. alpha 6 beta 4 plays an important role in the establishment of hemidesmosomes, and becomes redistributed on the epithelial cell surface when cells are in a migratory phase. We report that alpha 6 beta 4 is efficiently internalized in human keratinocytes. More than 25% of cell surface alpha 6 beta 4 was internalized at 30 minutes, after cross-linking with A9, an anti-beta 4 monoclonal antibody. alpha 6 beta 1 is also internalized, in melanoma and teratocarcinoma cells, with maximum values of 20% of total receptors expressed at the cell surface. No significant difference was observed between the alpha 6 isoforms A and B in these assays. To determine whether alpha 6 cytoplasmic domains could influence integrin endocytosis, we prepared chimeric constructs with the extracellular domain of a reporter protein (CD8), and the cytoplasmic domains of either alpha 6 A or alpha 6 B. Both alpha 6 cytoplasmic domains but not a control cytoplasmic domain promoted internalization of the chimeric proteins, after cross-linking with antibody. Internalization of alpha 6 integrins may have a role in redistributing these receptors at the cell surface. Furthermore, the cytoplasmic domains of alpha 6 may be involved in regulating integrin internalization.

Animals

Motherhood and drug-dependency: the attributes of full-time versus part-time responsibility for child care.

This study examined differences between the maternal characteristics of African-American drug-dependent mothers who have full-time responsibility for child care and those having part-time responsibility. The study revealed that full-time mothers have significantly higher levels of maternal adaptation than part-time mothers. For part-time mothers, the level of maternal adaptation or self-esteem did not fluctuate, regardless of whether she saw the child 4 days a week or once a month. The article identifies variables that may facilitate better maternal behaviors among drug-dependent mothers.

Adaptation, Psychological

Empty and peptide-containing conformers of class I major histocompatibility complex molecules expressed in Drosophila melanogaster cells.

Transfected Drosophila melanogaster cells can express large quantities of class I major histocompatibility complex molecules. Such molecules lack endogenous peptides because the Drosophila cells are devoid of proteins necessary for intracellular peptide loading. The empty molecules are efficiently expressed on the cell surface and can acquire extracellular peptides. The conformation and stability of empty murine class I molecules are determined by the source of beta 2-microglobulin. All beta 2-microglobulin-induced conformers of empty heavy chains seem to be unified in a common rigid conformation on peptide binding.

Amino Acid Sequence

In vitro peptide binding to soluble empty class I major histocompatibility complex molecules isolated from transfected Drosophila melanogaster cells.

A soluble form of a mouse class I major histocompatibility antigen (H-2Kb) has been expressed in transfected Drosophila melanogaster cells. These molecules were efficiently secreted (up to 4 mg/liter) as noncovalent heterodimers and purified to homogeneity from cell supernatants. The isolated soluble Kb molecules were devoid of endogenous peptides. Using these molecules, we have characterized the Kb heavy chain-beta 2-microglobulin (beta 2m) assembly as well as peptide binding in vitro. In detergent-free solution the heavy chains readily re-assembled with beta 2m even in the absence of peptides. Kinetic analyses showed that the peptide binding is rapid and reversible and dependent on the heavy chains being assembled with beta 2m. Likewise, peptide dissociated from Kb molecules without the displacement of beta 2m. Equilibrium binding experiments using various peptides confirmed that octapeptides bind to Kb molecules with the highest affinity and form the most stable complexes. However, in contrast to earlier studies, the amino-terminal positioning of peptide to Kb molecules was more crucial than the carboxyl-terminal positioning and amidation of the peptide carboxylate did not affect the binding. Soluble Kb molecules could selectively bind allele-specific peptides among a mixture of randomly synthesized octapeptides in vitro; however, no dominant residue was observed at the carboxyl terminus of bound peptides. This suggests that the previously observed hydrophobic residues at the carboxyl terminus of peptides may reflect the specificity of enzyme(s) or protein(s) involved in peptide processing in vivo.

Amino Acid Sequence

Abdominal vascular trauma: a review of 106 injuries.

A retrospective analysis of acute abdominal vascular injuries was performed to review outcome variables and treatment principles. The authors review their most recent 5-year experience with 106 major abdominal vascular injuries in 64 patients treated at a combined Army and Air Force urban medical center. The majority of the patients were young men who sustained penetrating injuries. There were 41 (64%) gunshot wounds, 17 (27%) stab wounds, and 6 (9%) sustained blunt trauma. Forty-five patients (71%) came to the hospital in shock. The inferior vena cava in 26 patients (41%) and the aorta in 11 patients (17%) were injured most frequently. Suture repair was possible in 53 (50%) injuries. Ligation was performed in 41 (39%). Overall mortality for the series was 39 per cent. Hemorrhagic shock was the cause of death in 23 patients (92%) with only two late deaths. Transfusion requirement, presence of shock, and number of vessels injured all affected outcome. Immediate stabilization in the emergency department includes appropriate crystalloid and blood product resuscitation with minimal delay for diagnostic studies. Prompt abdominal exploration to control hemorrhage and particular attention to factors associated with coagulopathy remain the key elements in saving the lives of these severely injured patients.

Abdominal Injuries

Uptake of tritiated thymidine by cells of the rat gastric mucosa after exposure to loxtidine or omeprazole.

The H2-antagonist loxtidine and the H+/K(+)-ATPase inhibitor omeprazole inhibit gastric acid secretion and both have been associated with the appearance of gastric tumours in rat cancer studies. Loxtidine is not genotoxic in a range of in vitro and in vivo assays. As false negative results can occur if the organotropic nature of the drug is not considered, both drugs were evaluated using an assay which estimates the uptake of tritiated thymidine by cells of the gastric mucosa (the target tissue) in comparison with the positive control, N-methyl-N-nitro-nitrosoguanidine (MNNG), which others have shown to induce genetic damage in the stomach mucosa of rats. Such uptake may be, in part, indicative of unscheduled DNA synthesis (UDS) resultant from genotoxic damage. Serum gastrin levels were also determined at various times after either loxtidine or omeprazole treatment. Increased uptake of tritiated thymidine was only obtained after omeprazole or MNNG treatment, when this was estimated scintillometrically. The nature of the formulation of omeprazole was critical. The uptake of tritiated thymidine was greatest when omeprazole was administered in vehicle which had been buffered to pH 9. These effects were unlikely to be due to the trophic effects of gastrin since serum gastrin levels were similar after either loxtidine or omeprazole treatment. Autoradiographic analysis of stomach sections was also carried out and revealed a 2- to 3-fold increase in the number of labelled cells within the fundic mucosa as compared to the control values after treatment with MNNG or Losec (enteric coated granules of omeprazole).(ABSTRACT TRUNCATED AT 250 WORDS)

Administration, Oral

Preclinical studies on the anti-migraine drug, sumatriptan.

Sumatriptan is believed to constrict selectively the cranial vessels that are distended and inflamed during migraine. The action is mediated by activation of a 5-HT1 receptor subtype which has been shown in animals to be localized in cranial vessels. Further studies to elaborate sumatriptan's precise clinical mode of action have focused on the human meningeal circulation and should lead to a better understanding of the pathogenesis of migraine. Administering [14C]sumatriptan, drug-related material was shown to be well absorbed. Following absorption there was some first-pass metabolism resulting in oral bioavailabilities of 37, 58 and 23% in rat, dog and rabbit, respectively. In all species, circulating sumatriptan was cleared rapidly by metabolic and renal clearance with a half-life of 1-2 h. The indoleacetic acid metabolite is the primary metabolic product; however, rats, mice and rabbits also N-demethylate the methylaminosulphonylmethyl side-chain. The passage of sumatriptan and its metabolites across the blood-brain barrier appeared to be very limited, although some drug could be detected in the cerebrospinal fluid after administration of high intravenous doses. Safety studies in various animal species showed that sumatriptan produced few adverse pharmacodynamic effects when administered acutely, except at high doses, although it was less well tolerated in dogs. No findings of toxicological significance were observed in rats and dogs after chronic dosing for 1 year or more.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals