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Biomedical subjects

S D Fuller

Publications and source records attributed to S D Fuller.

At least 55 records · Page 3Linked to original sources

Immunohistological detection of the beta subunit of prolyl 4-hydroxylase in rat and mini pig lungs with radiation-induced pulmonary fibrosis.

Polyclonal and monoclonal antibodies to the beta subunit of prolyl 4-hydroxylase, the protein disulphide isomerase, were used to compare the pulmonary cells in 13 normal and in 20 fibrotic rat and mini-pig lungs made fibrotic by X-ray irradiation, using the ABC immunoperoxidase technique. In normal lungs, prominent staining of Clara cells and type II pneumocytes and weaker reactivity with alveolar macrophages, fibroblasts, endothelial and smooth muscle cells were detectable. In pulmonary disease, in which interstitial fibrosis was the characteristic feature, the immunoreactivity was increased in both the epithelial and interstitial cells. Type I pneumocytes remained negative. In the early stages of disease (3 to 4 weeks after irradiation) when little morphological alteration was seen, capillary endothelial cells had already become immunoreactive. These results underline the complex involvement and interaction of different lung cell populations in the process of pulmonary fibrogenesis.

Animals↗

Difference imaging of adenovirus: bridging the resolution gap between X-ray crystallography and electron microscopy.

While X-ray crystallography provides atomic resolution structures of proteins and small viruses, electron microscopy provides complementary structural information on the organization of larger assemblies at lower resolution. A novel combination of these two techniques has bridged this resolution gap and revealed the various structural components forming the capsid of human type 2 adenovirus. An image reconstruction of the intact virus, derived from cryo-electron micrographs, was deconvolved with an approximate contrast transfer function to mitigate microscope distortions. A model capsid was calculated from 240 copies of the crystallographic structure of the major capsid protein and filtered to the correct resolution. Subtraction of the calculated capsid from the corrected reconstruction gave a three-dimensional difference map revealing the minor proteins that stabilize the virion. Elongated density penetrating the hexon capsid at the facet edges was ascribed to polypeptide IIIa, a component required for virion assembly. Density on the inner surface of the capsid, connecting the ring of peripentonal hexons, was assigned as polypeptide VI, a component that binds DNA. Identification of the regions of hexon that contact the penton base suggests a structural mechanism for previously proposed events during cell entry.

Adenoviruses, Human↗

Capsid localization of the bacteriophage P4 Psu protein.

In addition to its polarity-suppressing activity, the Psu protein of bacteriophage P4 also serves to stabilize the capsid against heat treatment and binds externally to the phage capsid. However, the heat stability is lost upon purification of the virus, indicating a loss of Psu protein from the capsid. By using three-dimensional reconstruction from cryo-electron micrographs of P4 psu1 amber mutants lacking Psu, and of P4 virions, which have been saturated with Psu protein to regain heat stability, we have determined the position of this protein on the virus surface. Our results are consistent with the hypothesis that the function of Psu is to stabilize the hexameric capsomer assembly.

Capsid↗

Image reconstruction from cryo-electron micrographs reveals the morphopoietic mechanism in the P2-P4 bacteriophage system.

The satellite bacteriophage P4 does not have genes coding for any major structural proteins, but assembles a capsid from the gene products of bacteriophage P2. The capsid assembled under control of P4 is smaller (45 nm) than the normal P2 capsid (60 nm). The low resolution (4.5 nm) structures of P2 and P4 capsids were determined by cryo-electron microscopy and image processing. The capsid of P2 shows T = 7 symmetry with most of the mass clustered as 12 pentamers and 60 hexamers. The P4 capsid has T = 4 symmetry with a similar distribution of mass to P2, but the hexamer geometry has changed. The major capsid protein has a two-domain structure. The major domains form the capsomers proper, while connecting domains form trivalent contacts between the capsomers. The size determination by P4 appears to function by altering hexamer geometry rather than by affecting the interdomain angle alone.

Bacteriophages↗

Bacteriophage phi 6 envelope elucidated by chemical cross-linking, immunodetection, and cryoelectron microscopy.

Bacteriophage phi 6 is an enveloped dsRNA virus which infects the plant pathogenic Pseudomonas syringae bacterium. Using low dose cryoelectron microscopy we show that the nucleocapsid, spikeless virion, and intact virion have radii of 29, 35, and 43 nm, respectively. Thus, the membrane is 6 nm thick and the surface spikes of the receptor binding protein P3 extend 8 nm from the membrane surface. Cross-linking, immunological, and complementation evidence suggest that the spikes are formed of multimeric P3 molecules and that P3 is associated with membrane-bound protein P6. We observe that the envelope can accommodate up to 400 molecules of P3 but that the average virion contains less than one-fourth of this amount. Assembly of a very small number of P3 or truncated P3 molecules onto inactive virions restores infectivity, showing that only a few spikes are necessary for receptor binding and membrane fusion.

Antibodies, Monoclonal↗

Hepatitis B surface antigen assembles in a post-ER, pre-Golgi compartment.

Expression of hepatitis B surface antigen (HBsAg), the major envelope protein of the virus, in the absence of other viral proteins leads to its secretion as oligomers in the form of disk-like or tubular lipoprotein particles. The observation that these lipoprotein particles are heavily disulphide crosslinked is paradoxical since HBsAg assembly is classically believed to occur in the ER, and hence in the presence of high levels of protein disulphide isomerase (PDI) which should resolve these higher intermolecular crosslinks. Indeed, incubation of mature, highly disulphide crosslinked HBsAg with recombinant PDI causes the disassembly of HBsAg to dimers. We have used antibodies against resident ER proteins in double immunofluorescence studies to study the stages of the conversion of the HBsAg from individual protein subunits to the secreted, crosslinked, oligomer. We show that HBsAg is rapidly sorted to a post-ER, pre-Golgi compartment which excludes PDI and other major soluble resident ER proteins although it overlaps with the distribution of rab2, an established marker of an intermediate compartment. Kinetic studies showed that disulphide-linked HBsAg dimers began to form during a short (2 min) pulse, increased in concentration to peak at 60 min, and then decreased as the dimers were crosslinked to form higher oligomers. These higher oligomers are the latest identifiable intracellular form of HBsAg before its secretion (t 1/2 = 2 h). Brefeldin A treatment does not alter the localization of HBsAg in this PDI excluding compartment, however, it blocks the formation of new oligomers causing the accumulation of dimeric HBsAg. Hence this oligomerization must occur in a pre-Golgi compartment. These data support a model in which rapid dimer formation, catalyzed by PDI, occurs in the ER, and is followed by transport of dimers to a pre-Golgi compartment where the absence of PDI and a different lumenal environment allow the assembly process to be completed.

Animals↗

No influence of airway heat flux on airflow-induced bronchospasm.

We used a canine model of airway reactivity to examine the role of airway heat flux in the response to dry air challenge. Airflow-induced bronchospasm (AIB) was assessed by measuring collateral system resistance (Rcs) with a wedged bronchoscope technique in anaesthetized mechanically ventilated dogs. We manipulate post-challenge airway heat flux by exposing peripheral airways to cool dry air (23.9 +/- 0.3 degrees C, 0.8 +/- 0.2 mgH2O.l-1), cool humid air (24.2 +/- 0.2 degrees C, 21.5 +/- 0.3 mgH2O.l-1), or warm humid air (35.3 +/- 0.4 degrees C, 40.6 +/- 0.3 mgH2O.l-1) during the recovery period (n = 14) following a high flow challenge (1,500 ml.min-1 for 2 min) with cool dry air. In a second series of experiments (n = 6), we attempted to further exaggerate airway heat flux during challenge by exposing peripheral airways to warm humid air during both baseline and recovery periods. In comparison to control (i.e. treatment with cool dry air before and after challenge), treatment with warm humid air during recovery period produced a small but significant attenuation (p less than 0.01) in Rcs. Cool humid air during recovery had no affect on Rcs following challenge. Warm humid air during both baseline and recovery tended to attenuate Rcs after challenge (p less than 0.05). We conclude that airway heat flux in itself has no significant physiological affect on AIB in the canine lung periphery.

Airway Resistance↗

Image reconstruction reveals the complex molecular organization of adenovirus.

The three-dimensional structure of adenovirus has been determined by image reconstruction from cryo-electron micrographs. Comparison with the high resolution X-ray crystal structure of hexon, the major capsid protein, enabled an unusually detailed interpretation of the density map and confirmed the validity of the reconstruction. The hexon packing in the capsid shows more extensive intermolecular interfaces between facets than previously proposed. The reconstruction provides the first three-dimensional visualization of the vertex proteins, including the penton base and its associated protruding fiber. Three minor capsid proteins that stabilize and modulate capsomer interactions are revealed. One of these components stabilizes the group-of-nine hexons in the center of each facet and the other two bridge hexons in adjacent facets. The strategic positions of these proteins highlight the importance of cementing proteins in stabilizing a complex assembly.

Adenoviruses, Human↗

Transient airway cooling modulates dry-air-induced and hypertonic aerosol-induced bronchoconstriction.

Airflow-induced bronchoconstriction (AIB) may be initiated in asthmatic patients by inhaling dry air during eucapnic hyperventilation or exercise. Hypertonic aerosol-induced bronchoconstriction (HIB) also occurs in these patients, but it differs from AIB by exhibiting a faster time course. Although AIB and HIB probably increase airway fluid osmolality, only AIB is associated with airway cooling. In light of the similarities between our canine model and human AIB, we examined peripheral airway responses to dry air and hypertonic aerosol challenge. Specifically, we studied the magnitude and time course of these responses in an in situ, isolated, perfused lobe in which airway temperature was independently controlled. At body temperature, HIB peaked immediately after challenge, whereas transient airway cooling during aerosol challenge delayed HIB. In contrast, airway cooling attenuated AIB but did not alter its time course. Hypocapnia- and histamine-induced responses were not affected by airway cooling, suggesting that smooth muscle function was not impaired. To the extent that the mechanisms producing AIB in dogs and in humans are similar, our results suggest that (1) changes in airway fluid osmolality initiate AIB, (2) AIB = HIB + Cooling, and (3) exercise-induced asthma results from an imbalance between an excitatory pathway stimulated by airway drying and an inhibitory pathway initiated by airway cooling.

Aerosols↗

Pulmonary consequences of aspiration.

Aspiration can lead to serious pulmonary disease and occasionally death. Substances aspirated commonly include bacteria or gastric contents or both, but may be as unusual as diesel oil or a variety of foreign bodies. Pulmonary symptoms range from a subtle cough, wheezing, or hoarseness to severe dyspnea or asphyxiation. We discuss the mechanism of pulmonary disease caused by aspiration as well as the appropriate treatment.

Airway Obstruction↗

The dynamic nature of the Golgi complex.

The intracellular transport of newly synthesized G protein of vesicular stomatitis virus is blocked at 20 degrees C and this spanning membrane glycoprotein accumulates in the last Golgi compartment, the trans Golgi-network (TGN). Previous morphological evidence suggested that the TGN enlarged significantly under this condition. In the present study we have used stereological procedures to estimate the volume and surface area of the Golgi stack and the TGN of baby hamster kidney cells under different conditions. The results indicate that the increase in the size of the TGN at 20 degrees C is accompanied by a significant decrease in the surface area and volume of the preceding Golgi compartments. A similar effect is also seen in uninfected cells at 20 degrees C, as well as during normal (37 degrees C) infection with Semliki Forest virus. In the latter case, however, the decrease in the size of the Golgi stack and the increase in that of the TGN is not accompanied by inhibition of transport from the Golgi complex to the cell surface. The results indicate that the Golgi stack and the TGN are dynamic and interrelated structures that are capable of rapid alteration in total surface area in response to changes in the rates of membrane transport.

Animals↗

Condensation-sorting events in the rough endoplasmic reticulum of exocrine pancreatic cells.

In guinea pig exocrine pancreatic cells intracisternal granules (ICGs) occur at a low frequency within the lumen of the RER. By starving and refeeding guinea pigs or injecting them in CoCl2 solution, the number of these granules is greatly increased. We show here that ICGs contain the complete set of secreted pancreatic digestive enzymes and proenzymes. Two other soluble proteins in the lumen of the RER, GRP 78/BiP and protein disulphide isomerase (PDI), are specifically excluded from ICGs. The formation of ICGs, which occurs without acidification of the RER cisternae, is therefore a sorting event involving the cocondensation of a complete set of secretory enzymes and proenzymes, which for brevity we refer to collectively as the zymogens. With the exception of approximately 50% of the RNase, the zymogens in ICGs are covalently cross-linked by intermolecular disulphide bonds. The synthesis of all three resident ER cisternal proteins--PDI, GRP 78/BiP, and GRP 94--with the carboxy-terminal sequence KDEL, is induced in response to the accumulation of massive amounts of misfolded secretory protein in the ICGs in the lumen of the RER. After injection of rats with large doses of parachlorophenylalanine-methylester, crystals form in the lumen of the RER. We show that these crystals appear to be a lattice of amylase with the other zymogens incorporated between the layers. Both GRP 78/BiP and PDI are excluded from these crystals. The formation of these amylase crystals within the RER and the inclusion of other zymogens is, therefore, also a sorting event. These data establish that in exocrine pancreatic cells zymogens can cocondense in the RER into either amorphous aggregates or crystals that exclude other soluble RER proteins. This demonstrates that cocondensation is a mechanism capable of sorting zymogens within the secretory pathway.

Animals↗

Morphological and biochemical evidence showing neuronal properties in AtT-20 cells and their growth cones.

AtT-20 cells, which were derived from a murine pituitary tumor and produce ACTH, have until now been considered to originate from pituitary corticotrophs. Here we show that AtT-20 cells constitutively express several neuronal features. First, AtT-20 cells develop cytoplasmic processes whose fine structure is essentially identical to that of neurites and neuronal growth cones. These growth cones (i) are characterized by an extensive membranous reticulum which is derived from the endoplasmic reticulum (ER) since it contains immunoglobulin heavy chain binding protein, protein disulfide isomerase and glucose-6-phosphatase; (ii) are a major site of endocytosis; (iii) form cell-to-cell contacts resembling immature synapses. Second, AtT-20 cells, in contrast to pituitary corticotrophs, contain neurofilaments and express all three neurofilament polypeptides. They also contain the high molecular weight form of microtubule-associated protein 2 and tau protein. Third, AtT-20 cells express the neuron-specific phosphoprotein synapsin I which accumulates in the growth cones prior to contacts forming between growth cones and cells. Our results show that AtT-20 cells exhibit several properties of peptidergic neuronal cells and that the constitutive expression of a variety of these properties is compatible with continuous cell division.

Animals↗

A model for the hepatitis B virus core protein: prediction of antigenic sites and relationship to RNA virus capsid proteins.

The sequences of the core proteins from several serotypes of human hepatitis B virus and related mammalian and avian hepadnaviruses are aligned with the vp3 capsid protein of mengo virus, a picornavirus. The homology indicates an eight-stranded antiparallel beta-barrel fold for the hepatitis protein, as observed in the tertiary structure of the picornavirus protein. The locations of known antigenic sites and other modifications are consistent with this structure for the core protein. The predicted folding suggests additional exposed antigenic sites and supports an evolutionary relationship between this family of enveloped DNA viruses and enveloped and non-enveloped RNA viruses.

Capsid↗

Mechanism of increased collateral airway resistance during inhomogeneous inflation of excised dog lungs.

Collateral airway resistance was measured during inflation of an excised lung lobe or a segment within the lobe. Gas blown into the outer lumen of a double lumen catheter (Vcoll) inflated the segment and exited via collateral airways. Pressure at the catheter tip (Pct) was measured through the inner lumen of the catheter, and transpulmonary pressure (Pao) was measured at the lobar bronchus. A pleural capsule measured pressure in the segmental subpleural alveoli (Ps). The segment was inflated with helium (He), air, or sulfurhexafluoride; the lobe was ventilated with air. Collateral airway resistance [Rcoll = (Pct-Pao)/Vcoll], intrasegmental airway resistance [Rs = (Pct-Ps)/Vcoll], and resistance of airways passing through the segment-lobar interface [Ri = (Ps-Pao)/Vcoll] were calculated. Rcoll, Rs, and Ri were decreased by lobar inflation and increased by segment inflation. The latter increase was due to nonlaminar flow in intrasegmental airways. The major resistance was Ri when Vcoll was laminar or transitional. Moody plots suggested that lobar inflation caused intrasegmental airway dilation whereas segment inflation did not affect segment airway geometry.

Airway Resistance↗

The T=4 envelope of Sindbis virus is organized by interactions with a complementary T=3 capsid.

The three-dimensional structure of Sindbis virus, an enveloped animal virus, has been determined to a resolution of 35 A by using a common lines procedure to combine cryoelectron micrographs of vitrified particles. The spikes of the virus appear as columnar trimers arranged on a T=4 lattice. The lipid bilayer of the virus envelope is polyhedral and surrounds a smooth T=3 nucleocapsid. Hence, a complete Sindbis virion (molecular weight 46.4 X 10(6)) contains 240 copies of each of the spike proteins and 180 copies of the capsid protein. The arrangement of the spike proteins is complementary to that of the nucleocapsid. Two types of spike-capsid interactions are seen. Spike trimers near the fivefold axes interact tightly with triplets of capsid elements, whereas those on the threefold axes interact more loosely.

Animals↗