PubMed HealthSearch

Biomedical subjects

L Graham

Publications and source records attributed to L Graham.

At least 19 recordsLinked to original sources

The assembly and secretion of ApoB 100-containing lipoproteins in Hep G2 cells. ApoB 100 is cotranslationally integrated into lipoproteins.

The possibility that apoB 100 is cotranslationally translocated to the endoplasmic reticulum lumen and integrated into lipoproteins has been investigated. ApoB 100 nascent polypeptides were shown to be secreted from pulse-labeled Hep G2 cells after treatment with puromycin and chase for 1 or 2 h in the presence of puromycin and cycloheximide. These nascent polypeptides banded during sucrose gradient ultracentrifugation between the position of the high (HDL) and the low (LDL) density lipoproteins, revealing an inverse relationship between the length of the polypeptide and the density of the fraction. ApoB 100 occurred in the position of LDL and very low density lipoproteins (VLDL). Electronmicroscopy studies of the apoB-containing particles from the gradient indicated an increase in size with increasing length of the polypeptide. Furthermore, labeling studies indicated that the triglyceride load increased with the length of the polypeptide. An inverse relationship between the size of C-terminally truncated apoB polypeptides and the density of the assembled lipoproteins was also observed in experiments with transfected minigenes coding for apoB 41, apoB 29, and apoB 23. These proteins appeared on HDL particles. Pulse-chase experiments indicated that 80-200-kDa apoB nascent polypeptides on particles with HDL density, with time, were converted into larger polypeptides on lighter particles, to be fully replaced by apoB 100 on LDL-VLDL particles. The formation of these LDL-VLDL particles could be blocked by cycloheximide. Sixty-five percent of pulse-labeled apoB nascent polypeptides present in the microsomal fraction was released by sodium carbonate treatment, and 77% of these polypeptides could be recovered on the immature particles (banding between HDL and LDL) after sucrose gradient ultracentrifugation. Pulse-chase experiments indicated that these nascent polypeptides, on the immature lipoproteins, had the capacity to be precursors for all the apoB 100-containing LDL and VLDL particles formed in the cell. The obtained results indicate that a major portion of the apoB nascent polypeptides in the cell form lipoproteins cotranslationally during the translocation to the lumen of the endoplasmic reticulum.

Apolipoprotein B-100

Cytokine production by cholesterol-loaded human peripheral monocyte-macrophages: the effect on fibrinogen mRNA levels in a hepatoma cell-line (HepG2).

Conditioned medium from human monocyte-macrophages incubated under various conditions was tested for its ability to stimulate fibrinogen mRNA levels in the hepatoma cell line HepG2. Recombinant human interleukin-6 (IL-6) stimulated fibrinogen mRNA levels 4.4-fold over control levels; this response was blocked by an anti-IL-6 antibody. Conditioned medium from 3-day-cultured monocyte-macrophages produced a slight stimulation of fibrinogen synthesis in HepG2 cells which was enhanced when the monocyte-macrophages had been treated with lipopolysaccharide (LPS). This stimulation was blocked by the anti IL-6 antibody. The cytokines, interleukin-1 (IL-1) and tumour necrosis factor (TNF) were also detected in the conditioned medium from the 3-day-cultured monocyte-macrophages. Monocyte-macrophages were cultured for 17 days and then incubated with acetylated low density lipoprotein (AcLDL) for 48 h. Such cells were 'foamy' in appearance and showed a 4-fold increase in apoE mRNA and a 10 to 50-fold increase in apoE secretion. This increase in apoE production was suppressed by almost a third when cells were coincubated with AcLDL and LPS. Conditioned medium from these 17-day-cultured AcLDL-treated human monocyte-macrophages did not stimulate fibrinogen mRNA synthesis in HepG2 cells, nor did the conditioned medium contain detectable levels of cytokines. These results suggest that cytokine production from foam cells in the atherosclerotic lesion is unlikely to be a major contributing factor in determining the elevated fibrinogen levels seen in the plasma of patients with IHD.

Antibodies

The molecular mechanism for the assembly and secretion of ApoB-100-containing lipoproteins.

We have reviewed the literature on the intracellular transport of ApoB-100 and the assembly of the ApoB-100-containing lipoproteins. ApoB-100 is a large molecule (4536 aa) that requires some 15 min to be completed. During the synthesis, the protein could take one of two pathways: a degradational pathway and a pathway that leads to secretion of the protein on mature lipoproteins. The degradational pathway starts with a cotranslational incorporation of ApoB-100 into the membrane of the endoplasmic reticulum in such a way that a relatively large portion of the sequence is exposed on the cytoplasmic surface of this membrane. The membrane bound ApoB-100 is retained in the ER and will eventually undergo intracellular degradation. To enter the pathway that leads to lipoprotein formation, ApoB-100 has to be cotranslationally translocated to the lumen of the ER. ApoB-100 will interact with the lipids during this translation-translocation process and the mature lipoprotein is released into the lumen of the secretory pathway when ApoB-100 is completed and leaves the ribosome. In addition to the mature lipoproteins, the secretory pathway contains an ApoB-100-containing lipoprotein with the density of a HDL particle. This particle is not secreted from the cells but is retained and eventually degraded. Of importance for the retention are sequences present in the C-terminal half of the protein. The mature lipoproteins rapidly leave the ER lumen and are transported to the Golgi apparatus, through which transfer takes considerably longer. The assembly process is a potential site for the regulation of the secretion of the ApoB-100-containing lipoproteins. This process is dependent on active synthesis of phosphatidylcholine and it is also highly dependent on the rate of triacylglycerol synthesis. On the other hand, ApoB-100 appears to be constitutively expressed. An increase in the rate of lipoprotein assembly induced by an increased triacylglycerol synthesis gives rise to an increased recruitment of ApoB-100 nascent polypeptides to interact cotranslationally with lipids. ApoB-100 that is not used for lipoprotein assembly is cotranslationally bound to the ER membrane and sorted to degradation.

Animals

Purification, and biochemical and structural characterization of a fimbrial haemagglutinin of Renibacterium salmoninarum.

Renibacterium salmoninarum was shown to possess peritrichous fimbriae. Electron microscopy of strains FMV 84-01 and ATCC 33209T revealed short, flexible fimbriae less than 2 nm in diameter. These surface appendages were isolated from the bacteria by a procedure involving water extraction and urea solubilization. The fimbrin was purified to homogeneity by Fast Pressure Liquid Chromatography, and shown by SDS-PAGE to be a protein of 57 kDa. Isoelectric focusing under non-denaturing conditions indicated a pI of 4.8. The protein had an amino acid composition rich in glycine, Asx (aspartic acid and asparagine), valine and alanine; methionine was absent. Approximately 33% of the amino acid residues were hydrophobic. Immunoblotting using a polyclonal antiserum raised against whole cells showed that the 57 kDa protein was the immunodominant antigen on the cell surface. Immunogold labelling using polyclonal antibodies raised against the fimbrin revealed an alignment of gold particles along the fimbriae. Purified fimbriae caused agglutination of rabbit erythrocytes and antifimbrial serum inhibited this haemagglutination. Altogether the results indicate that the fimbriae on the surface of R. salmoninarum are responsible for the haemagglutinating activity.

Amino Acids

Comparing two sampling techniques for endocervical cell recovery on Papanicolaou smears.

The importance of endocervical cells in a Pap smear is well-recognized. A Pap smear lacking endocervical cells is considered inadequate and necessitates a repeat test. Clinicians continue to search for techniques that will ensure consistently adequate samples. In this study, Pap smears were obtained for 200 subjects, alternating use of a saline-moistened cotton-tipped applicator with the Zelsmyr Cytobrush for endocervical cell collection. Endocervical cells were present in all 100 Cytobrush smears, compared with 91 of the cotton-tipped applicator smears. The difference is significant (p less than 0.005). The nine smears that lacked endocervical cells were repeated, using the Cytobrush; all nine repeat smears contained endocervical cells. Although the sample used in this study was small, results indicate that the Cytobrush is more effective in obtaining endocervical cells than the cotton-tipped applicator. Use of the Cytobrush is recommended in the interest of reducing the number of false negative reports.

Adolescent

Clinical and microbiological evidence for endemic pharyngitis among adults due to group C streptococci.

Group C beta-hemolytic streptococci cause rare epidemic outbreaks of pharyngitis, but their role in sporadic endemic pharyngitis has been uncertain. We addressed the question of whether non-group A beta-hemolytic streptococci are associated with endemic pharyngitis in two ways. First, we compared rates of isolation from throat swabs of group A, B, C, and G and ungrouped beta-hemolytic streptococci ("culture negative") in adult patients vs those rates in controls. Second, we collected in standardized form clinical indexes of patients with pharyngitis: signs and symptoms graded for severity, the examining physician's subjective estimate of the probability of streptococcal pharyngitis, a logistic regression score predicting streptococcal pharyngitis, and whether antibiotic therapy was prescribed. After collecting data and cultures on 1425 patients with sore throats and cultures on 284 controls, we found the following: group C streptococci were isolated significantly more frequently in patients with sore throats than in controls (6% vs 1.4%); four clinical signs and two symptoms distinguished group C-associated pharyngitis as more severe than culture-negative pharyngitis; and six clinical signs and one symptom distinguished group C-associated pharyngitis as less severe than group A pharyngitis. Physicians' subjective estimates, logistic regression scores, and antibiotic treatment all characterized group C-associated pharyngitis as more severe than culture-negative sore throats but less severe than group A pharyngitis. From these data we present the first definitive evidence that group C streptococci are associated with endemic pharyngitis, show that clinical presentation distinguishes a group of patients with group C-associated pharyngitis from populations with culture-negative sore throats and from those with group A pharyngitis. Physicians' response to that presentation merits consideration in the context of rapid group-specific diagnosis of streptococcal pharyngitis by group A antigen tests.

Adult

Simultaneous determination of the reducible and nonreducible cross-links of connective tissue. Analysis of mineralized and nonmineralized bone collagen.

Secondary amine cross-links occur in collagen and elastin from a number of tissue sources. Quantification of these cross-links by amino acid analysis is complicated by the problem of separating cross-links, which are often minor components, from the more common amino acids and also because relatively large amounts of a cross-link are required to determine a color factor. A specific radioactive labeling method has been developed and used to quantify cross-links in bone collagen. Primary amines such as lysine and hydroxylysine are first guanidinated with 3,5-dimethylpyrazole-1-carboxamidine nitrate (DMPC). Secondary amines, which are unreactive with DMPC, are then quantitatively cyanoethylated with [14C]acrylonitrile. This procedure can be used to detect any secondary amine cross-link, with higher sensitivity than ninhydrin analysis, in peptide form as well as in acid hydrolysates. It is applied here in conjunction with [3H]NaBH4 reduction to simultaneously quantify Schiff base cross-links and amounts of in vivo reduction of Schiff bases in mineralized versus nonmineralized bovine bone.

Amines

Peptidylglycine alpha-amidating monooxygenase activity in spinal cord, dorsal roots, and dorsal root ganglia of Macaca fascicularis.

Several peptides synthesized by primary sensory neurons are alpha-amidated at the C-terminal residue, including vasoactive intestinal polypeptide, neurokinin A and substance P, which is also abundant in spinal cord. In pituitary and other tissues, the C-terminal amidation is catalyzed by peptidylglycine alpha-amidating monooxygenase (PAM). In the present study, soluble PAM activity in spinal cord and in primary sensory neurons is quantified and characterized as to cofactor and cosubstrate requirements and substrate specificity.

Animals

Mutants of Escherichia coli O9:K30 with altered synthesis and expression of the capsular K30 antigen.

Escherichia coli K30 produces a thermostable group I capsular polysaccharide. Two classes of mutants were isolated with defects in the synthesis or expression of capsule. The most common mutant phenotype was acapsular (K-), with no K-antigen synthesized. A second class of mutants, termed Ki or intermediate forms, produced colonies which were indistinguishable from those of acapsular forms yet K-antigenicity was expressed. Previous studies had demonstrated that E. coli strains that produce K30 antigen synthesize a lipopolysaccharide (LPS) fraction that is recognised by monoclonal antibodies against the K30 antigen. Synthesis of this LPS fraction was not affected in Ki forms. The results of morphological examination, LPS analysis and phage sensitivity studies are consistent with the interpretation that the defect in Ki strains results from an inability to polymerize the K30 antigen. Using plasmid pULB113 (RP4::mini-Mu), mutations resulting in both K- and Ki phenotypes were localized near the his region of the chromosome.

Antigens, Bacterial

Molybdate transport by Bradyrhizobium japonicum bacteroids.

Bacteroid suspensions of Bradyrhizobium japonicum USDA 136 isolated from soybeans grown in Mo-deficient conditions were able to transport molybdate at a nearly constant rate for up to 1 min. The apparent Km for molybdate was 0.1 microM, and the Vmax was about 5 pmol/min per mg (dry weight) of bacteroid. Supplementation of bacteroid suspensions with oxidizable carbon sources did not markedly increase molybdate uptake rates. Anaerobically isolated bacteroids accumulated twice as much Mo in 1 h as aerobically isolated cells did, but the first 5 min of molybdate uptake was not dependent on the isolation condition with respect to O2. Respiratory inhibitors such as cyanide, azide, and hydroxylamine did not appreciably affect molybdate uptake, even at concentrations that inhibited O2 uptake. The uncouplers carbonyl cyanide m-chlorophenylhydrazone (CCCP) and carbonyl cyanide p-trifluoromethoxyphenylhydrazone (FCCP) and the ionophores nigericin and monensin significantly inhibited molybdate uptake. The electrogenic ionophores valinomycin and gramicidin stimulated molybdate uptake. Rapid pH shift experiments indicated that molybdate transport depends on a transmembrane proton gradient (delta pH), and it is probably transported electroneutrally as H2MoO4. Most of the 99MoO4(2-) taken up was not exchangeable with a 100-fold excess of unlabeled MoO4(2-). Tungstate was a competitive inhibitor of molybdate uptake, with a Ki of 0.034 microM, and vanadate inhibited molybdate uptake slightly.

Aerobiosis

Hydrogen-mediated enhancement of hydrogenase expression in Azotobacter vinelandii.

Azotobacter vinelandii cultures express more H2 uptake hydrogenase activity when fixing N2 than when provided with fixed N. Hydrogen, a product of the nitrogenase reaction, is at least partly responsible for this increase. The addition of H2 to NH4+-grown wild-type cultures caused increased whole-cell H2 uptake activity, methylene blue-dependent H2 uptake activity of membranes, and accumulation of hydrogenase protein (large subunit as detected immunologically) in membranes. Both rifampin and chloramphenicol inhibited the H2-mediated enhancement of hydrogenase synthesis. Nif- A. vinelandii mutants with deletions or insertions in the nif genes responded to added H2 by increasing the amount of both whole-cell and membrane-bound hydrogenase activities. Nif- mutant strain CA11 contained fourfold more hydrogenase protein when incubated in N-free medium with H2 than when incubated in the same medium containing Ar. N2-fixing wild-type cultures that produce H2 did not increase hydrogenase protein levels in response to added H2.

Azotobacter

Mycobacterium avium complex pseudobacteriuria from a hospital water supply.

From July 1983 through November 1985, organisms belonging to Mycobacterium avium complex were isolated from the urine of 29 patients. Strains recovered from the urine of nine patients from July 1983 through August 1984 were serotyped. Eight of the nine samples belonged to serovar 4. M. avium complex was isolated from the urine of 21 patients during the period from November 1984 through November 1985. While the possibility of a point source contamination was investigated, M. avium complex was recovered from the phenol red solution used for processing urine specimens in the mycobacteriology laboratory and the deionized tap water of that laboratory that is used to make the reagent. M. avium complex serovar 4 was subsequently recovered from the tap water of the laboratory and four hospital wards. During the year following the installation of a microbiological filter for the mycobacteriology laboratory deionized tap water, 2 urine isolates were recovered, compared to 26 the previous year. This study demonstrates the importance of filtration devices at tap water sites that are used to make laboratory reagents and the value of serotyping as a marker for the detection of a specific source of M. avium complex contamination.

Bacteriuria