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L A Guthrie

Publications and source records attributed to L A Guthrie.

18 recordsLinked to original sources

Appearance of phosphatidylserine on apoptotic cells requires calcium-mediated nonspecific flip-flop and is enhanced by loss of the aminophospholipid translocase.

Phosphatidylserine (PS), ordinarily sequestered in the plasma membrane inner leaflet, appears in the outer leaflet during apoptosis, where it triggers non-inflammatory phagocytic recognition of the apoptotic cell. The mechanism of PS appearance during apoptosis is not well understood but has been associated with loss of aminophospholipid translocase activity and nonspecific flip-flop of phospholipids of various classes. The human leukemic cell line HL-60, the T cell line Jurkat, and peripheral blood neutrophils, undergoing apoptosis induced either with UV irradiation or anti-Fas antibody, were probed in the cytofluorograph for (i) surface PS using fluorescein isothiocyanate-labeled annexin V, (ii) PS uptake by the aminophospholipid translocase using [6-[(7-nitrobenz-2-oxa-1,3-diazol-4-yl)amino] caproyl] (NBD)-labeled PS, (iii) nonspecific uptake of phospholipids (as a measure of transbilayer flip-flop) using NBD-labeled phosphatidylcholine, and (iv) the appearance of hypodiploid DNA. In all three types of cells undergoing apoptosis, the appearance of PS followed loss of aminophospholipid translocase and was accompanied by nonspecific phospholipid flip-flop. Importantly, however, in the absence of extracellular calcium, the appearance of PS was completely inhibited despite DNA fragmentation and loss of aminophospholipid translocase activity, the latter demonstrating that loss of the translocase is insufficient for PS appearance during apoptosis. Furthermore, while both the appearance of PS and nonspecific phospholipid uptake demonstrated identical extracellular calcium requirements with an ED50 of nearly 100 microM, the magnitude of PS appearance depended on the level of aminophospholipid translocase activity. Taken together, the data strongly suggest that while nonspecific flip-flop is the driving event for PS appearance in the plasma membrane outer leaflet, aminophospholipid translocase activity ultimately modulates its appearance.

Apoptosis↗

A comparative study of HLA-DRB typing by transcription-mediated amplification with the hybridization protection assay (TMA/HPA) versus PCR/SSOP.

To evaluate alternative human leukocyte antigen (HLA)-DNA typing methods, we used a system of transcription-mediated amplification (TMA) with a probe hybridization protection assay (HPA) in a microtiter plate format developed by Chugai Pharmaceutics Ltd. (Tokyo, Japan) to perform intermediate-level DRB typing for 502 individual samples. Two hundred fifty-two samples submitted to our Clinical Immunogenetics Laboratory were prospectively tested concurrently with a locally developed intermediate-level DRB polymerase chain reaction/sequence-specific oligonucleotide probe (PCR/SSOP) assay in a double-blind fashion. In addition, 250 retrospective samples of archived frozen cells or DNA from clinical and research panels, previously typed by allele-level DRB1 PCR/SSOP, were chosen to include 66 distinct DRB1 alleles representing Caucasian, American Black, Asian, and Native American ethnic groups. Among the prospectively typed samples, except for four samples with a TMA/HPA microplate handling problem, a single TMA/HPA allele assignment (1/462 alleles = 0.2%) was discordant with PCR/SSOP. Among the 250 retrospective samples, a single HPA probe for codon 57 aspartic acid consistently cross-reacted with the codon 57 valine sequence of DRB1*0807. However, TMA/HPA identified six samples with previous PCR/SSOP typing errors, all of which involved identification of sequences at codons 67-71 in samples heterozygous for two DR52-associated DRB1 alleles. Assay turnaround time from sample preparation to results was 11 h for 24 samples or 6-7 h for 1-4 samples. In summary, we found the TMA/HPA DRB typing system to provide rapid, reliable, and accurate HLA-DRB typing results. The current TMA/HPA methodology could be improved by use of a molded plastic cold block to provide more consistent and secure microtiter plate cooling than the current water/ice slurry. Nevertheless, this methodology, based on a microtiter plate format but without the usual plate washing steps of the traditional ELISA, has superior potential for microplate handling and reagent distribution with a robotics system and a work surface incorporating microplate heating and cooling units.

Alleles↗

Evaluation of the mixed lymphocyte culture (MLC) assay as a method for selecting unrelated donors for marrow transplantation.

The utility of the MLC assay as a test of HLA-D region matching and predictor of graft-versus-host disease (GvHD) was evaluated in 435 patients receiving marrow grafts from unrelated donors. Donors and recipients were phenotyped for HLA-A, B and DR antigens by serology, tested in MLC, and retrospectively genotyped for DRB1, B3, B4, B5, DQB1 and DPB1 alleles by PCR/SSOP. Of the 244 HLA-A, B, DR-identical donor-recipient pairs with valuable MLC and DRB1 typing results available, 208 were matched for HLA-A, B and DRB1, while 36 were matched for HLA-A and B and mismatched for a DRB1 allele. Donor anti-recipient relative responses (RR) in MLC, corresponding to the GvHD vector in marrow transplantation, ranged from 7.2 to 100%, with a median of 4.0%. A comparison of reactivity in MLC between pairs matched versus mismatched for DRB1 alleles showed a significant overlap in the distribution of RRs. Using optimally-defined RR cutoffs of 4 and 16%, no correlation between MLC results and risk of developing clinically significant grades III-IV GvHD (p=0.6 and 0.5, respectively) was found when the contribution of DRB1 mismatch was accounted for. Matching for DRB1 alleles, in contrast, was a better predictor of clinically significant GvHD, with DRB1-matched transplant recipients less likely to develop grades III-IV GvHD than DRB1-mismatched recipients (p=0.14). Among the 208 patients and donors matched for DRB1 alleles, the MLC, although reactive (RR > 4.0%) in 45% of cases, did not predict GvHD. Overall, these results underscore the limitations in using the MLC to predict DRB1 matching or risk of clinically significant GvHD among patients receiving unrelated marrow grafts. The availability of DRB1 allele matching by sequence-specific oligonucleotide probes (SSOP) or by direct sequencing provides a method for donor matching that is rapid, precise and superior to the MLC for predicting clinically relevant outcome.

Acute Disease↗

Six new DR52-associated DRB1 alleles, three of DR8, two of DR11, and one of DR6, reflect a variety of mechanisms which generate polymorphism in the MHC.

We have sequenced DNA from six new DR52-associated DRB1 alleles initially detected by PCR/SSOP analysis. Three DR8 associated alleles differed from previously known alleles by single nucleotide substitutions. DRB1*0807 and DRB1*0811 both vary from DRB1*08021 at codon 57 resulting in two different amino acids at this residue. DRB1*0807 was identified in samples of Brazilian origin while *0811 was identified among samples from the Tlingit Native American population of Southeast Alaska. DRB1*0814, identified in a family of Chinese origin, differed from DRB1*08032 at codon 12 at both the nucleotide and the amino acid level. In addition, two alleles of DR11, DRB1*1113 and *1119, were each detected in Caucasian individuals. DRB1*1113 differs from other DR11 alleles at codons 37, 67, 70 and 74, while DRB1*1119 differs from *1101 by a single nucleotide substitution at codon 67. Finally, DRB1*1418 was detected in a sample from an Asian or Pacific Islander and shares sequences with several other DR52-associated DRB1 alleles. These six DRB1 alleles appear to have been generated by either gene conversion events, DRB1*1113 and *1418, or by point mutations, DRB1*0814, *0807, *0811 and *1119, although the single nucleotide substitutions found in the latter three alleles are also present in at least one other DRB1 allele and, therefore, could have been the product of gene conversions.

Base Sequence↗

Role of the mixed lymphocyte culture (MLC) reaction in marrow donor selection: matching for transplants from related haploidentical donors.

The utility of the MLC assay as a test of HLA-D region matching and predictor of acute graft-versus-host disease (GvHD) was evaluated in 157 patients receiving marrow grafts from HLA-A, B identical related haploidentical donors. All donors and recipients were tested by HLA-DR serology, by Dw phenotyping with homozygous typing cells (HTC) and by standard MLC. Ninety-nine of the donor-recipient pairs were mismatched for a serologically defined HLA-DR antigen while 109 pairs were mismatched for the HLA-DR region by HTC typing. Donor antirecipient relative responses (RR) in MLC, corresponding to the GvHD vector in marrow transplantation, ranged from -4% to 100%, with a median of 25%. A comparison of reactivity in MLC with presence or absence of matching by Dw phenotyping, however, showed a significant overlap in the distribution of RRs from HLA-Dw matched versus Dw mismatched pairs, suggesting that the MLC was not a reliable predictor of HLA-Dw matching. Using an optimally-defined cutoff of 3% RR, the MLC was correlated with risk of developing clinically significant grades II-IV acute GvHD (p = 0.03) but not with risk of developing severe grades III-IV GvHD (p = 0.18). In contrast, matching by Dw phenotype was a significant predictor of GvHD, with Dw-compatible transplant recipients less likely to develop either grades II-IV (p = 0.004) or III-IV (p = 0.036) GvHD than Dw-incompatible transplant recipients. Overall, these results underscore the difficulty in using the MLC to measure HLA-D region compatibility and predict the risk of severe graft-versus-host disease among patients receiving related haploidentical marrow grafts. HLA-D (HTC) typing results correlate primarily with DRB compatibility, and with the advent of DRB1 allele matching by sequence-specific oligonucleotide probes (SSOP) or by direct sequencing, the precision in donor matching achievable with these methods is far greater than with either HLA-D typing or direct MLC testing.

Adolescent↗

The use of mouse serum and the presence of non-adherent cells for the culture of mouse macrophages.

Mouse serum (MS) was investigated as an alternative to fetal calf serum (FCS) as a medium supplement for the culture of murine macrophages. Peritoneal macrophages were successfully cultured in medium supplemented with 1-20% MS and were able to produce superoxide anions in response to stimulation with phorbol myristate acetate (PMA) and to phagocytose antibody-coated erythrocytes effectively. Macrophages cultured in the presence of 5% or 20% FCS showed a generally augmented response to PMA, raising the possibility that they had been 'primed' by constituents or contaminants of FCS. Lipopolysaccharide-elicited macrophages initially showed vigorous in vitro responses to PMA which decreased with increasing culture time in MS-supplemented medium. This 'de-differentiation' of elicited macrophages could be due to the absence of LPS contamination and foreign protein when autologous serum is used as a medium supplement. In all cultures the presence of non-adherent cells for the first 24 h increased the number and superoxide response of adherent cells. MS is a convenient, reliable and inexpensive alternative to FCS as a medium supplement for murine macrophage cultures.

Animals↗

The priming of neutrophils by lipopolysaccharide for production of intracellular platelet-activating factor. Potential role in mediation of enhanced superoxide secretion.

LPS priming of the neutrophil results in enhanced release of superoxide upon subsequent stimulation, but the mechanism of this effect remains obscure. The recent recognition that neutrophils synthesize and retain platelet-activating factor within the cell led us to hypothesize that enhanced synthesis of platelet-activating factor in the LPS-primed cell might account for the observed effects of lipopolysaccharide. Using human neutrophils isolated on plasma-Percoll gradients, we found that incubation with 100 ng/ml LPS for 60 min resulted in a small but significant increase in intracellular platelet-activating factor assessed after lipid extraction, TLC, and bioassay. The further stimulation of primed neutrophils with FMLP resulted in a marked increase in neutrophil platelet-activating factor compared with non-LPS-treated controls. The priming effect of LPS was time dependent (30 to 60 min), dose dependent, and inhibited at 0 degree C and did not require protein synthesis. Platelet-activating factor so generated was not released but rather retained within the neutrophil, and the molecular species of platelet-activating factor produced was predominantly 1-O-hexadecyl-2-acetyl-sn-3-phosphorylcholine. Platelet-activating factor production in LPS-treated neutrophils was also enhanced by PMA, suggesting that receptor-mediated events could not account exclusively for the enhancement. Considering the ability of nanomolar concentrations of exogenously added platelet-activating factor to prime the neutrophil for enhanced release of superoxide, the rapid intracellular accumulation of platelet-activating factor that accompanies stimulation of an LPS-primed cell by FMLP may modulate the secretory events that accompany such stimulation.

Adjuvants, Immunologic↗

Priming of neutrophils and macrophages for enhanced release of superoxide anion by the calcium ionophore ionomycin. Implications for regulation of the respiratory burst.

Phagocytic cells can be primed for enhanced stimulated release of superoxide anion (O2-) by exposure to a variety of biologic agents, including gamma-interferon and lipopolysaccharide. We examined the role of calcium ion in this priming, using the calcium ionophore ionomycin. Preincubation with ionomycin, 1 to 10 nM, primed human neutrophils to release up to 7-fold more O2- during stimulation with 1 microM formyl-methionyl-leucyl-phenylalanine (f-Met-Leu-Phe). With 160 nM phorbol myristate acetate as stimulus, ionomycin caused a doubling of O2- production in mouse peritoneal macrophages. Incubation of phagocytes with ionomycin at priming concentrations did not directly stimulate O2- release. Priming of neutrophils occurred in 1-2 min and was associated with a marked reduction in the lag time for O2- release after f-Met-Leu-Phe stimulation and with an increase in the rate of O2- production. Kinetic analysis of NADPH-dependent O2(-)-producing activity in sonicates of resting human neutrophils incubated with sodium dodecyl sulfate suggested that modification of the enzyme responsible for the respiratory burst was not responsible for priming. Priming of neutrophils with ionomycin had no apparent effect on either the activity or subcellular distribution of protein kinase C. The effect of ionomycin on the cytosolic free calcium concentration ([Ca2+]c) was assessed in neutrophils using the calcium-sensitive fluorescent dye fura-2. Ionomycin at priming concentrations caused an approximate doubling of the base-line [Ca2+]c. When neutrophils were exposed to various concentrations of ionomycin, a parallel rise in [Ca2+]c and priming was observed. A rise in [Ca2+]c of approximately 0.8 microM caused half-maximal priming. These results suggest that an increase in [Ca2+]c is not sufficient to initiate release of O2-, but they support the concept that Ca2+ can serve as a second messenger in this event.

Animals↗

Macrophage membrane proteins: possible role in the regulation of priming for enhanced respiratory burst activity.

Brief exposure of macrophages to the proteolytic enzymes papain, elastase, or trypsin primed them for enhanced production of superoxide anion (O2-) in response to stimulation by phorbol myristate acetate (PMA). Priming by trypsin was achieved at 0 degree C, at which temperature trypsin functions as a protease but is not internalized, supporting the concept that protease priming depends on modification of the plasma membrane. Analysis of external membrane proteins after radioiodination of intact cells and separation by gel electrophoresis indicated that papain treatment of macrophages resulted in the cleavage of a membrane protein with a molecular weight of approximately 305K. Membranes from macrophages primed by elicitation with Corynebacterium parvum also demonstrated a reduced amount of the membrane protein at approximately 305 kDa, as well as a reduction of a protein at about 270 kDa. Lipopolysaccharide-elicited macrophages showed a reduced amount of a protein at about 175 kDa. Continuous spectrophotometric assays of O2- release from adherent macrophages indicated that after exposure to a stimulus, protease-treated cells produced O2- more quickly than did control cells (reduced lag time). Inhibitors of protein synthesis augmented the priming effect of papain when added with the protease. These results suggest that protease-induced priming results from inactivation of a membrane protein (or proteins) that exerts a down-regulating effect on the respiratory burst.

Animals↗

Neutrophil-mediated injury to endothelial cells. Enhancement by endotoxin and essential role of neutrophil elastase.

The neutrophil has been implicated as an important mediator of vascular injury, especially after endotoxemia. This study examines neutrophil-mediated injury to human microvascular endothelial cells in vitro. We found that neutrophils stimulated by formyl-methionyl-leucyl-phenylalanine (FMLP), the complement fragment C5a, or lipopolysaccharide (LPS) (1-1,000 ng/ml) alone produced minimal endothelial injury over a 4-h assay. In contrast, neutrophils incubated with endothelial cells in the presence of low concentrations of LPS (1-10 ng/ml) could then be stimulated by FMLP or C5a to produce marked endothelial injury. Injury was maximal at concentrations of 100 ng/ml LPS and 10(-7) M FMLP. Pretreatment of neutrophils with LPS resulted in a similar degree of injury, suggesting that LPS effects were largely on the neutrophil. Endothelial cell injury produced by LPS-exposed, FMLP-stimulated neutrophils had a time course similar to that induced by the addition of purified human neutrophil elastase, and different from that induced by hydrogen peroxide (H2O2). Further, neutrophil-mediated injury was not inhibited by scavengers of a variety of oxygen radical species, and occurred with neutrophils from a patient with chronic granulomatous disease, which produced no H2O2. In contrast, the specific serine elastase inhibitor methoxy-succinyl-alanyl-alanyl-prolyl-valyl-chloromethyl ketone inhibited 63% of the neutrophil-mediated injury and 64% of the neutrophil elastase-induced injury. However, neutrophil-mediated injury was not inhibited significantly by 50% serum, 50% plasma, or purified alpha 1 proteinase inhibitor. These results suggest that, in this system, chemotactic factor-stimulated human neutrophil injury of microvascular endothelial cells is enhanced by small amounts of LPS and may be mediated in large part by the action of neutrophil elastase.

Amino Acid Chloromethyl Ketones↗

Modulation of multiple neutrophil functions by preparative methods or trace concentrations of bacterial lipopolysaccharide.

Human neutrophils were isolated from peripheral blood by four methods: 1) Ficoll-Hypaque gradients and erythrocyte lysis, 2) plasma-Percoll gradients, 3) a "lipopolysaccharide (LPS)-free" method yielding 85% neutrophils, and 4) by centrifugation of cells prepared by Method 3 through a plasma-Percoll gradient to produce pure neutrophils. The use of the Ficoll-Hypaque method resulted in spontaneous change of cell shape, enhanced formyl-methionyl-leucyl-phenylalanine (FMLP)-stimulated release of superoxide anion, increased release of lysosomal enzymes upon subsequent FMLP stimulation, and reduced chemotactic responsiveness, by comparison with the other methods. These effects were not due to erythrocyte lysis by NH4C1 but were reproduced by exposure of neutrophils prepared by the "LPS-free" method or the use of plasma-Percoll gradients to 10-100 ng/ml LPS. Neutrophil change of shape and stimulated O-2 production were particularly sensitive markers of these effects. The effects of trace concentrations of LPS in the modulation of neutrophil function may have relevance to the pathophysiology of endotoxemia and its resultant tissue injury.

Ammonium Chloride↗

Priming of neutrophils for enhanced release of oxygen metabolites by bacterial lipopolysaccharide. Evidence for increased activity of the superoxide-producing enzyme.

We investigated the capacity of bacterial endotoxin (lipopolysaccharide, LPS) to modify the oxidative metabolic response to membrane stimulation of human neutrophils. Neutrophils were pretreated for 60 min with LPS, 10 ng/ml, then stimulated by exposure to fixed immune complexes, the chemotactic peptide formyl-methionyl-leucyl-phenylalanine (FMLP), or phorbol myristate acetate. Release of superoxide anion (O-2) was up to 7-times greater in cells preincubated with LPS, depending upon the stimulus used. Consumption of oxygen and release of hydrogen peroxide (H2O2) were similarly increased, using FMLP as stimulus. The enhancement was accompanied by a reduction in lag time and an increase in the rate of the response, but the duration of the oxidative events was not changed. The molecular basis for the augmented oxidative response of LPS-pretreated cells was investigated. Preincubation with LPS at 0 degrees C prevented priming, but preincubation in the presence of cycloheximide or chelation of extracellular calcium ion did not. Neutrophils preincubated with LPS had slightly decreased numbers of binding sites and equivalent binding affinity for radiolabeled FMLP. Possible changes in the enzyme responsible for the oxidative burst were analyzed by studying NADPH-dependent generation of O-2 by particulate fractions from cells preincubated with LPS or buffer, then stimulated before cell disruption. The fraction prepared from LPS-pretreated neutrophils exhibited greater release of O-2 over a wide range of concentrations of NADPH. The calculated apparent Km for NADPH was equivalent in the two fractions, but the Vmax was increased 2.5-fold in the subcellular fraction from LPS-pretreated cells. These results suggest that LPS could increase neutrophil-mediated host defense or the tissue damage associated with endotoxemia by enhancing the generation of oxygen metabolites by neutrophils. These results also support the concept that the neutrophil is not an end-stage cell in regard to function or metabolic activity.

Calcium↗

Serum complement changes during double-blind food challenges in children with a history of food sensitivity.

Serum levels of C3, C4, factor B, properdin, total hemolytic complement and alternative-pathway hemolytic activity were measured before and after double-blind food challenge in 23 children with impressive histories of adverse reactions to foods. The 23 subjects had 11 positive food challenges and 12 negative food challenges. Nine patients with reagin-mediated positive food challenges showed increases in all six complement assays after double-blind food challenge, while the group with negative food challenges showed decreases in five of the six assays. The difference between the two groups for complement changes after double-blind food challenge was significant only for the alternative-pathway assay. Individual subject analysis revealed markedly heterogeneous changes in direction and magnitude within both groups for all complement assays. Therefore, it is concluded that measurement of serum complement levels is not a useful test for the clinical evaluation of a patient with suspected food sensitivity.

Adolescent↗

Deficient activity of the alternative pathway of complement in beta thalassemia major.

Patients with thalassemia major suffer frequent and serious infections, especially after splenectomy. To explore the basis for this susceptibility, we examined activity of the complement system in sera from 24 patients. All sera had normal or increased activity of the classic complement pathway. However, six of the 24 (three with and three without splenectomy) had abnormal alternative pathway function, and mean alternative pathway activity was significantly decreased in both splenectomized and nonsplenectomized patients. Mean concentrations of C3, factor B, properdin, and immunoglobulins were normal. Defective alternative pathway function, especially in conjunction with asplenia, could contribute to the propensity to infection that exists in thalassemia.

Adolescent↗

Generation of superoxide anion and chemiluminescence by human monocytes during phagocytosis and on contact with surface-bound immunoglobulin G.

Extent of O-2-release and chemiluminescence, attributed to singlet oxygen, has been compared in human monocytes and neutrophils during phagocytosis, stimulation by the surface-active agent phorbol myristate acetate, or contact with aggregated IgG in a model of immune complex disease. Monocytes generated O-2-and chemiluminescence with each of the three stimuli, although values were significantly less than those of neutrophils from the same individuals. Lymphocytes had no significant activity in either assay with any stimulus. Oxygen metabolites released from mononuclear phagocytes are highly reactive and could play a part in both the beneficial and detrimental aspects of chronic inflammation.

Immunoglobulin G↗