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D C Johnson

Publications and source records attributed to D C Johnson.

At least 145 records · Page 8Linked to original sources

Differences between patients with ventricular tachycardia and ventricular fibrillation as assessed by signal-averaged electrocardiogram, radionuclide ventriculography and cardiac mapping.

This study examined 65 patients with ventricular tachycardia or fibrillation late after myocardial infarction to determine whether they differed with respect to duration of ventricular activation in sinus rhythm and left ventricular ejection fraction. Patients with spontaneous ventricular tachycardia had a longer ventricular activation time in sinus rhythm than did patients with spontaneous ventricular fibrillation. This difference was detected with the signal-averaged electrocardiogram (ECG) (tachycardia 181 +/- 33 ms, fibrillation 152 +/- 23 ms, p less than 0.001) and at epicardial mapping (tachycardia 210 +/- 17 ms, fibrillation 192 +/- 17 ms, p less than 0.02). Left ventricular ejection fraction was lower in patients with spontaneous ventricular tachycardia (0.22 +/- 0.09) than in patients with spontaneous ventricular fibrillation (0.27 +/- 0.09) (p less than 0.05). The patients with both spontaneous and inducible ventricular fibrillation had a shorter ventricular activation time on the signal-averaged ECG (129 +/- 17 ms) and a higher ejection fraction (0.36 +/- 0.05) than did either patients with spontaneous ventricular fibrillation and inducible ventricular tachycardia (158 +/- 21 ms and 0.25 +/- 0.08, respectively, each p less than 0.01) or patients with both spontaneous and inducible ventricular tachycardia (181 +/- 33 ms and 0.22 +/- 0.09, respectively, each p less than 0.001). Of the patients with inducible ventricular tachycardia, presentation with tachycardia rather than fibrillation was associated with a longer ventricular activation time on the signal-averaged ECG (181 +/- 33 versus 158 +/- 21 ms, p less than 0.02) and a longer cycle length of inducible ventricular tachycardia (290 +/- 61 versus 259 +/- 44 ms, p = 0.05).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Herpes simplex viruses lacking glycoprotein D are unable to inhibit virus penetration: quantitative evidence for virus-specific cell surface receptors.

Herpes simplex virus (HSV) glycoprotein D (gD) plays an essential role in the entry of virus into cells. HSV mutants unable to express gD were constructed. The mutants can be propagated on VD60 cells, which supply the viruses with gD; however, virus particles lacking gD were produced in mutant-infected Vero cells. Virus particles with or without gD adsorbed to a large number (greater than 4 x 10(4] of sites on the cell surface; however, virions lacking gD did not enter cells. Cells pretreated with UV-inactivated virions containing gD (approximately 5 x 10(3) particles per cell) were resistant to infection with HSV type 1 (HSV-1) and HSV-2. In contrast, cells pretreated with UV-inactivated virions lacking gD could be infected with HSV-1 and HSV-2. If infectious HSV-1 was added prior to UV-inactivated virus particles containing gD, the infectious virus entered cells and replicated. Therefore, virus particles containing gD appear to block specific cell surface receptors which are very limited in number. Particles lacking gD are presumably unable to interact with these receptors, suggesting that gD is an essential receptor-binding polypeptide.

Adsorption↗

Herpes simplex virus immunoglobulin G Fc receptor activity depends on a complex of two viral glycoproteins, gE and gI.

Evidence was recently presented that herpes simplex virus type 1 (HSV-1) immunoglobulin G (IgG) Fc receptors are composed of a complex containing a previously described glycoprotein, gE, and a novel virus-induced polypeptide, provisionally named g70 (D. C. Johnson and V. Feenstra, J. Virol. 61:2208-2216, 1987). Using a monoclonal antibody designated 3104, which recognizes g70, in conjunction with antipeptide sera and virus mutants unable to express g70 or gE, we have mapped the gene encoding g70 to the US7 open reading frame of HSV-1 adjacent to the gE gene. Therefore, g70 appears to be identical to a recently described polypeptide which was named gI (R. Longnecker, S. Chatterjee, R. J. Whitley, and B. Roizman, Proc. Natl. Acad. Sci. USA 84:147-151, 1987). Under mildly denaturing conditions, monoclonal antibody 3104 precipitated both gI and gE from extracts of HSV-1-infected cells. In addition, rabbit IgG precipitated the gE-gI complex from extracts of cells transfected with a fragment of HSV-1 DNA containing the gI, gE, and US9 genes. Cells infected with mutant viruses which were unable to express gE or gI did not bind radiolabeled IgG; however, cells coinfected with two viruses, one unable to express gE and the other unable to express gI, bound levels of IgG approaching those observed with wild-type viruses. These results further support the hypothesis that gE and gI form a complex which binds IgG by the Fc domain and that neither polypeptide alone can bind IgG.

Animals↗

A herpes simplex virus mutant in which glycoprotein D sequences are replaced by beta-galactosidase sequences binds to but is unable to penetrate into cells.

Herpes simplex virus (HSV) glycoprotein gD is a major component of the virion envelope and is thought to play an important role in the initial stages of viral infection and stimulates the production of high titers of neutralizing antibodies. We assumed that gD plays an essential role in virus replication, and so to complement viruses with mutations in the gD gene we constructed a cell line, denoted VD60, which is capable of expressing high levels of gD after infection with HSV. A recombinant virus, designated F-gD beta, in which sequences encoding gD and a nonessential glycoprotein, gI, were replaced by Escherichia coli beta-galactosidase sequences, was selected on the basis that it produced blue plaques on VD60 cell monolayers under agarose overlays containing 5-bromo-4-chloro-3-indolyl-beta-D-galactopyranoside (X-Gal). F-gD beta was able to replicate normally on complementing VD60 cells. However, F-gD beta was unable to form plaques on noncomplementing Vero cells. Virions lacking gD were produced in normal amounts by Vero cells infected with F-gD beta, and the virus particles were distributed throughout the cytoplasm and on the cell surface, suggesting that gD is not essential for HSV envelopment and egress. Virions lacking gD were able to bind to cells, but were unable to initiate synthesis of viral early polypeptides. Plaque production of F-gD beta particles lacking gD was enhanced by polyethylene glycol treatment, suggesting that gD is essential for penetration of HSV into cells. Other HSV glycoproteins have been implicated in the entry of virus into cells, and thus this process appears to involve multiple interactions at the cell surface.

Animals↗

Effects of inhibitors on chloride outflux from cerebrospinal fluid.

Movement of chloride from cerebrospinal fluid (CSF) to brain or blood is one of the factors that may be involved in regulation of CSF [Cl-], which is important to CSF acid-base balance. We made quantitative measurements of the unidirectional outflux of radiolabeled chloride (38Cl, half-life 37.3 min) from CSF in anesthetized dogs, using ventriculocisternal perfusion (VCP). The outflux of 38Cl from CSF was determined from the difference between the movements of 38Cl and dextran using a one-compartment model. VCP was performed at a rate of 1.4 ml/min for 14 min, and then slowed to 0.28 ml/min. The 38Cl activity decreased to a steady-state level approximately 12% lower than that of dextran within 40-50 min. Under control conditions for the first run (n = 24), the flux was 0.042 +/- 0.003 (SE) ml/min. The outflux under control conditions (n = 6) tended to increase over three separate determinations in a 6-h period, being 136 +/- 19% of the first run on the second run, and 143 +/- 24% on the third. There were no significant changes in 38Cl outflux compared with control ratios after the inclusion of bumetanide in the VCP fluid (n = 6), which inhibits sodium-coupled Cl- transport, with acetazolamide (n = 6), which inhibits carbonic anhydrase, or with 4,4'-diisothiocyanostilbene-2,2'-disulfonic acid (n = 6), an inhibitor of carrier-mediated anion exchange. These results suggest that the outward movement of chloride from CSF occurs mostly by passive diffusion and is not by mediated transport.

4-Acetamido-4'-isothiocyanatostilbene-2,2'-disulfo↗

The estrogen 2-hydroxylase activity of the gonadotropin-stimulated hypophysectomized immature rat ovary.

Using high-performance liquid chromatography and a combination of electrochemical and radiometric flow detection for 2-[14C]hydroxyestradiol, changes in estrogen 2-hydroxylase activity in the microsomal fraction of rat ovarian homogenates were followed. Injection of human chorionic gonadotropin (hCG) at 12-hr intervals to hypophysectomized immature rats stimulated hypertrophy of the theca-interstitial tissue and produced a profound increase in enzyme activity. With the last injection of hCG at 96 hr the peak serum concentration of hCG was reached 12 hr later and then decreased exponentially with a half-time of 13 hr. However, enzyme activity remained elevated for at least 60 hr before beginning to fall. Pregnant mare's serum gonadotropin (PMSG) also produced an increase in activity, which was apparently limited to the thecal-interstitial tissue because freshly removed granulosa cells from the mature follicles had undetectable activity levels. Administration of anti-PMSG antiserum after enzyme activity had been increased resulted in a prompt fall in activity, as did injection of hCG to mimic an ovulatory surge of LH. The results indicate that the thecal-interstitial tissue of the rat ovary has estrogen 2-hydroxylase activity that is dependent upon gonadotropic stimulation for expression.

Animals↗

Effect of excision of ventricular myocardium on delayed potentials detected by the signal-averaged electrocardiogram in patients with ventricular tachycardia.

The ability of surgical excision of electrically abnormal ventricular myocardium to either abolish delayed potentials or modify their timing was investigated in 21 patients with spontaneous ventricular tachycardia (VT) late after myocardial infarction. This study also examined whether modification of delayed potentials after surgery was associated with loss of ability to induce VT or improvement in left ventricular function. Signal averaging of the electrocardiogram (ECG), programmed stimulation and radionuclide ventriculography were performed preoperatively and were repeated 10 to 14 days postoperatively. At preoperative investigation, all patients had delayed potentials on the signal-averaged ECG and inducible VT at programmed stimulation. In 7 patients (33%), delayed potentials were abolished by surgery, exceeding the baseline variability of 8.5% for detection of delayed potentials. VT was no longer inducible postoperatively in 16 patients (76%), including the 7 in whom delayed potentials were no longer detectable. In the patients in whom VT was no longer inducible, mean ventricular activation time decreased from 178 ms preoperatively to 151 ms postoperatively (standard error of the mean difference = 6 ms, p less than 0.001). In the 5 patients with inducible VT postoperatively, no significant change in mean ventricular activation time was seen, 181 vs 171 ms (standard error of mean difference = 9 ms). Reductions in ventricular activation time were not associated with an improvement in left ventricular ejection fraction unless aneurysmectomy was performed in addition to excision of electrically abnormal myocardium. Thus, the signal-averaged ECG may have a role in assessing the efficacy of antiarrhythmic surgery.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

The effects of intrauterine position on competition and behavior in the mouse.

The purpose of the present study was to examine the effect of intrauterine position on: (1) competition for limited food resources when the animals were previously deprived of food; (2) social preference for a male during various phases of the estrous cycle; and (3) social and sexual behavior when the animals were provided with like-treated females or receptive females, respectively. Females developing in utero between two males (2M females) and females developing between two females (0M females) were different on only one measure recorded during the competition for limited food, i.e., gaining control of the food pellet, with the 0M females outcompetiting the 2M females. When given a choice between a male or a female neither 2M or 0M females in estrus showed a preference for the male. The results also indicated that 2M females were significantly more aggressive and more likely to show male sexual behavior when compared to 0M females.

Animals↗

Cyclosporine A inhibits herpes simplex virus-induced cell fusion but not virus penetration into cells.

The effects of the immunosuppressive peptide cyclosporine A on virus-induced cell fusion and virus penetration into cell were studied. Cyclosporine totally inhibited polykaryocyte formation by a syncytial strain of HSV-1 (MP). In contrast, a number of other hydrophobic peptides which inhibit the replication of orthomyxo- and paramyxoviruses and which were less effective in inhibiting fusion in model systems had little effect on HSV-induced cell fusion. Virus replication as measured by the yield of infectious virus and by incorporation of [35S]methionine into viral proteins was unaffected by treating cells with cyclosporine. Cyclosporine did not quantitatively inhibit cell surface expression of HSV glycoproteins or plaque formation of syncytial or nonsyncytial virus strains. However, plaques formed by HSV-1 (MP) on cyclosporine-treated monolayers were smaller than those on untreated monolayers and were morphologically similar to plaques produced by the nonsyncytial HSV strain F. Surprisingly, cyclosporine did not inhibit penetration of HSV, a process also thought to involve membrane fusion. Therefore, HSV-1-induced cell fusion and penetration of virus into cells either proceed by mutually exclusive mechanisms or are differentially sensitive to cyclosporine.

Animals↗

Release of prostaglandins and leukotrienes from the rat uterus is an early estrogenic response.

The early estrogenic responses are considered to be involved in inducing embryo implantation in a progesterone (P4)-primed uterus. Because of their involvement in the process of implantation and decidualization, prostaglandins (PGs) and leukotrienes (LTs) could be the mediators of early estrogenic responses in a P4-primed uterus. Therefore, temporal effects of estrogen on the production and/or release of PGF2, PGF2 alpha, LTB4 and LTC4 by the P4-primed uterus of hypophysectomized rats were examined. Hypophysectomized mature female rats were injected for 4 days with P4 (2 mg/rat, s.c.) or with P4 plus a single injection of estradiol-17 beta (E2) (100 ng or 200 ng/rat, i.v.) on the last day of P4 treatment. In one set of experiments, animals were killed at 0.5, 2, 4, 8, 12 and 30th after the last steroid treatment. The production of PGs and Lts by uterine homogenates was measured by radioimmunoassays (RIAs). The production of PGE2 and PGF2 alpha in P4-treated animals showed peaks at 2, 6 and 12h. The superimposition of E2 on P4 treatment induced a higher production rate of PGE2 and PGF2 alpha at 0.5h and abolished the peaks induced by P4 at 2h, but not the peaks at 6 or 12h. Irrespective of the kind of steroid hormonal treatments, uterine production of LTs showed a rapid decline between 6 and 8h followed by a sharp rise at 12h. The superimposition of E2 on P4-treatment again increased the production rates of LTB4 and LTC4 at early hours, i.e. at 0.5 and 2h, respectively, as compared to P4 treatment only.

Animals↗

Decidualization in the rat: role of leukotrienes and prostaglandins.

The role of prostaglandins (PGs) and leukotrienes (LTs) in the induction of decidualization in the rat uterus was investigated. In the hypophysectomized progesterone (P4) primed rat, intraluminal infusion for four days by osmotic minipump, of PGE2 (1 ug/h), LTC4 (10 ng/h) or 0.15M saline (1 ul/h) significantly elevated uterine weight when compared to the noninfused horn: all were equally effective. In contrast, simultaneous infusion of PGE2 and LTC4 produced an increase in uterine weight which was markedly higher than any other conditions and the reaction was elicited along the entire length of the uterine horn. Infusion of PGE2, LTC4, a combination of the two or vehicle, into one uterine horn of day-5 pseudopregnant rats elicited a huge decidual response. Infusion of indomethacin, an inhibitor of PG synthesis, FPL 55712 (FPL), an antagonist of LTs, or a combination of these inhibitors evoked a minimal decidual response. In addition, FPL infused along with PGE2 or LTC4 markedly reduced the response that could be induced by these arachidonate metabolites alone. Furthermore, infusion of indomethacin along with LTC4 resulted in a far smaller response than that obtained with LTC4 alone. These results are interpreted to indicate that there is an interaction between LTs and PGs in the induction of the uterine decidual response.

Animals↗

Unknown phosphate compounds in tail muscle of intact conscious newts by 31P NMR.

Unknown phosphate resonances at 0 and -21.6 ppm have been identified in 31P NMR spectra of tail muscle of unanesthetized newts which do not correspond to known phosphate-bearing compounds in skeletal muscle cells. The concentrations of both unknowns decrease markedly during muscular activity and severe hypoxia (conditions associated with decreased intracellular pH and increased cellular levels of inorganic phosphate). The unknown at 0 ppm increases in concentration with imposition of moderate hypoxia. Our data suggest that these unknowns may be liable storage compounds for a high energy phosphate bond, and are involved in newt skeletal muscle phosphogen metabolism.

Adenosine Triphosphate↗

Management of ascending aortic dissection: experience with the USCI intraluminal prosthesis and a method of aortic valve repair.

Ten consecutive cases of acute ascending aortic dissection operated on using the USCI intraluminal prosthesis from 1983 to 1986 were reviewed. Diagnosis was achieved by conventional angiography in six cases, by intraarterial digital subtraction angiography in one case, by computerized tomography (CT) scan in two cases and by echocardiography and abdominal ultrasound in one case. An entry site was seen in only five out of six conventional angiograms. At operation six of the 10 had a degree of tamponade. Aortic regurgitation was seen five times, due to dissection in four cases and to Marfan's disease in one. The entry site was controlled in eight cases. Repair using intraluminal prosthesis only was achieved in five cases. Aortic valve repair was added in four out of 10 cases, and in one of these an aorta-to-right coronary graft was also added. One case required aortic valve replacement. A method of aortic valve repair is presented. There were nine survivors, 1-36 months postoperatively. Of these, eight were asymptomatic on no medication. One had severe aortic regurgitation noted 2 months postoperatively and has mildly reduced exercise tolerance. Surgical treatment can be planned if the presence of dissection is proven and involvement of the ascending aorta is demonstrated. Early surgery is important, since six of the 10 cases in this series had tamponade. The intraluminal graft will reliably redirect flow to the true lumen and exclude the dissection from the pericardium. Aortic valve repair can be successful though late replacement may be necessary in some cases. Control of the entry site is not essential to achieve a good clinical result.

Adult↗

Neutralizing monoclonal antibodies specific for herpes simplex virus glycoprotein D inhibit virus penetration.

Nine monoclonal antibodies specific for glycoprotein D (gD) of herpes simplex virus type 1 were selected for their ability to neutralize virus in the presence of complement. Four of these antibodies exhibited significant neutralization titers in the absence of complement, suggesting that their epitope specificities are localized to site(s) which contribute to the role of gD in virus infectivity. Each of these antibodies was shown to effectively neutralize virus after virion adsorption to cell surfaces, indicating that neutralization did not involve inhibition of virus attachment. Although some of the monoclonal antibodies partially inhibited adsorption of radiolabeled virions, this effect was only observed at concentrations much higher than that required to neutralize virus and did not correlate with complement-independent virus-neutralizing activity. All of the monoclonal antibodies slowed the rate at which virus entered cells, further suggesting that antibody binding of gD inhibits virus penetration. Experiments were carried out to determine the number of different epitopes recognized by the panel of monoclonal antibodies and to identify epitopes involved in complement-independent virus neutralization. Monoclonal antibody-resistant (mar) mutants were selected by escape from neutralization with individual gD-specific monoclonal antibodies. The reactivity patterns of the mutants and antibodies were then used to construct an operational antigenic map for gD. This analysis identified a minimum of six epitopes on gD that could be grouped into four antigenic sites. Antibodies recognizing four distinct epitopes contained in three antigenic sites were found to neutralize virus in a complement-independent fashion. Moreover, mar mutations in these sites did not affect the processing of gD, rate of virus penetration, or the ability of the virus to replicate at high temperature (39 degrees C). Taken together, these results (i) confirm that gD is a major target antigen for neutralizing antibody, (ii) indicate that the mechanism of neutralization can involve inhibition of virus penetration of the cell surface membrane, and (iii) strongly suggest that gD plays a direct role in the virus entry process.

Animals↗

Identification of a novel herpes simplex virus type 1-induced glycoprotein which complexes with gE and binds immunoglobulin.

We detected a glycoprotein on the surface of cells infected with herpes simplex virus type 1 (HSV-1) which, in conjunction with gE, binds immunoglobulin G (IgG). The novel glycoprotein, which has an apparent molecular mass of 70 kilodaltons and was provisionally named g70, was first detected in extracts of HSV-1-infected cells labeled by lactoperoxidase-catalyzed iodination and precipitated with rabbit sera or IgG and protein A-Sepharose. In subsequent experiments, g70 and gE were coprecipitated from extracts of HSV-1-infected cells labeled with [35S]methionine, [35S]cysteine, or 14C-amino acids. We were unable to precipitate a polypeptide analogous to g70 or gE from extracts of HSV-2-infected cells with rabbit IgG and protein A-Sepharose. Partial proteolytic peptide analysis indicated that g70 is structurally distinct from gE and gI). In addition, g70 was electrophoretically distinct from the HSV-1 Us4 glycoprotein gG. HSV-1 gE, expressed in mouse cells transfected with the gE gene, was not precipitated with rabbit IgG, nor could these cells bind radiolabeled IgG, suggesting that gE alone cannot act as an IgG (Fc) receptor. This result, coupled with the findings that gE and g70 are coprecipitated with IgG and with an anti-gE monoclonal antibody, suggests that gE and g70 form a complex which binds IgG. The electrophoretic mobilities of g70 molecules induced by different strains of HSV-1 differed markedly, arguing that g70 is encoded by the virus and is not a cellular protein induced by virus infection.

Animals↗

Cells expressing herpes simplex virus glycoprotein gC but not gB, gD, or gE are recognized by murine virus-specific cytotoxic T lymphocytes.

To determine which viral molecule(s) is recognized by herpes simplex virus (HSV)-specific cytotoxic T lymphocytes (CTL), target cells were constructed which express individual HSV glycoproteins. A mouse L cell line, Z4/6, which constitutively expressed high levels of HSV type 2 (HSV-2) gD (gD-2) was isolated and characterized previously (D. C. Johnson and J. R. Smiley, J. Virol. 54:682-689, 1985). Despite the expression of gD on the surface of Z4/6 cells, these cells were not killed by anti-HSV-2 CTL generated following intravaginal infection of syngeneic mice. In contrast, parental Z4 or Z4/6 cells infected with HSV-2 were lysed. Furthermore, unlabeled Z4/6 cells were unable to block the lysis of HSV-2-infected labeled target cells. Cells which express HSV-1 gB (gB-1) were isolated by transfecting L cells with the recombinant plasmid pSV2gBneo, which contains the HSV-1 gB structural sequences and the neomycin resistance gene coupled to the simian virus 40 early promoter and selecting G418-resistant cell lines. One such cell line, Lta/gB15, expressed gB which was detected by immunoprecipitation and at the cell surface by immunofluorescence. Additionally, cells expressing HSV-1 gC (gC-1) or gE (gE-1) were isolated by transfecting Z4 cells, which are L cells expressing ICP4 and ICP47, with either the recombinant plasmid pGE15neo, which contains the gE structural sequences and the neomycin resistance gene, or pDC17, which contains the gC structural gene coupled to the gD-1 promoter. A number of G418-resistant cell lines were isolated which expressed gC-1 or gE-1 at the cell surface. Anti-HSV-1 CTL generated following footpad infection of syngeneic mice were unable to lyse target cells expressing gB-1 or gE-1. In contrast, target cells expressing very low levels of gC-1 were killed as well as HSV-1-infected target cells. Furthermore, infection of gC-1-transformed target cells with wild-type HSV-1 or a strain of HSV-1 that does not express gC did not result in a marked increase in susceptibility to lysis. These results suggest that murine class I major histocompatibility complex-restricted anti-HSV CTL recognize gC-1 but do not recognize gB, gD, or gE as these molecules are expressed in transfected syngeneic target cells. The results are discussed in terms of recent evidence concerning the specificity of antiviral CTL.

Animals↗

Chloride flux from blood to CSF: inhibition by furosemide and bumetanide.

Movement of chloride from blood to cerebrospinal fluid (CSF) is one of the factors that may be involved in regulation of CSF [Cl-], which is important to CSF acid-base balance. We made quantitative measurements of the unidirectional flux of radiolabeled chloride between blood and CSF in anesthetized dogs, using 38Cl, a short-lived isotope (half-life 37.3 min). This allowed multiple studies to be performed in a given animal. A three-compartment model for the blood, CSF, brain extracellular fluid, and ventriculocisternal perfusion system was used to determine the flux rate. With normocapnia, the flux was 0.01.1 min-1. The influx could be reproducibly measured for three separate determinations in the same animal over a period of 6 h, being 98 +/- 6% of the control first run on the second run and 113 +/- 6% on the third. Furosemide and bumetanide, inhibitors of sodium-coupled chloride movement, lowered the flux to 43 +/- 3% and 55 +/- 6% of control, respectively. The combination of hypercapnia and furosemide lowered the influx to 63 +/- 9% of control. These results indicate that a major mechanism of chloride entry into CSF is sodium-coupled chloride transport.

Animals↗