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Extracellular uncoating of bacteriophage MS2.

In the early stages of infection of its host, Escherichia coli, bacteriophage MS2 sheds its icosahedral protein capsid, after which the single-stranded genomic RNA (gRNA) and maturation protein enter the cell as a complex. Although the steps preceding uncoating, which include the binding of the Mat protein to the extracellular filament F-pilus, have been studied in detail, the uncoating step is not well understood. To study when and where uncoating happens, we image the infection process using fluorescence microscopy, separately labelling the MS2 capsid, its gRNA, and the cells. We do two types of experiments. In the first, we incubate the phage in a nonspecific intercalating dye, and we count the number of uncoated and intact phages before and after adding the labeled phages to cells. In the second, we examine the time course of infection by fixing unlabeled samples at different times after adding the phage, and then we label the MS2 gRNA using amplified fluorescence in situ hybridization. In both cases, we find that uncoating can occur anywhere on the F-pili, and that MS2 usually uncoats at a distance from the cell rather than at the cell surface. While these results do not rule out a current hypothesis that virus particles uncoat when the F-pilus retracts and brings them into contact with the cell body, they demonstrate an alternative, extracellular uncoating pathway. We discuss the possiblity that MS2 may have multiple uncoating pathways, and that the rate of each pathway could reflect a trade-off between different risk factors.

Levivirus

Relative systemic availability of sulfapyridine from commercial enteric-coated and uncoated sulfasalazine tablets.

The absorption of sulfapyridine after a single 2.0-Gm oral dose of sulfasalazine, the drug of choice in the treatment of inflammatory bowel disease, as commercial uncoated and enteric-coated and uncoated tablets was evaluated in four healthy male adults. The peak plasma concentration of sulfapyridine after the enteric-coated tablets occurred at 20 hours on the average (compared to 14 hours for the uncoated tablets) and was only 50% of that attained from the uncoated tablets (P less than 0.05). The low relative extent of systemic availability of sulfapyridine from the enteric-coated tablets (65.5 +/- 6.3 per cent, mean +/- S.E.) compared to uncoated tablets may be due to absorption rate-dependent presystemic metabolism, since the relative extent of sulfapyridine absorption was 92.7 +/- 6.2 per cent compared to uncoated tablets. These findings suggest that enteric-coated and uncoated tablets of sulfasalazine are not bioequivalent. It remains to be determined whether the clinical efficacy of sulfasalazine from enteric-coated tablets is affected.

Adult

Elution and uncoating of Coxsackievirus B3 by isolated HeLa cell plasma membranes.

Plasma membranes isolated from HeLa cells on discontinuous sucrose gradients were assayed for their capacity to elute and uncoat coxsackievirus B3 at 37 C. Because the viral receptors are limited to the surface of HeLa cells, the addition of radioactively labeled virus to the cells prior to cell homogenization provided a useful marker for locating the plasma membranes during the fractionation procedure. Four bands were formed on the discontinuous sucrose gradients with approximately 70% or more of the membrane-associated viral label being recovered in the most dense bands, designated as bands 3 and 4. Bands 3 and 4 also possessed the plasma membrane marker enzymes, Na+, K+ adenosine triphosphatase and 5'-nucleotidase and revealed typical structures characteristic of plasma membranes as revealed by electron microscopy. Pelleted and washed membranes from band 3 both eluted and uncoated B3 32P-labeled virus, whereas membranes from band 4 eluted virus but failed to uncoat it. The membranes from band 4 were shown to inhibit the viral uncoating activity when mixed with membranes of band 3. Characteristically, unfractionated homogenates of cell membranes eluted but did not uncoat virus. The finding of a naturally occurring inhibitor of virus uncoating provides for the first time a way to distinguish between the membrane activities of virus elution and virus uncoating. The inhibitor remains to be characterized.

Adenosine Triphosphatases

Effect of hemoperfusion with coated and uncoated charcoal on human blood in vitro.

During 4 hours, in-vitro hemoperfusion of human blood was performed in 4 series of experiments: control, cellulose coated charcoal, polyacrylohydrogel coated charcoal and uncoated charcoal. In the control series little change on corpuscular elements and electrolytes was observed. In all hemoperfusion series there was little change of RBC and uniformly a marked fall of the granulocyte count. Platelet- and lymphocyte counts were significantly less affected by cellulose coated charcoal than by the other preparations. Coated and uncoated charcoal absorbed avidly calcium and glucose from the blood. By contrast the potassium level decreased moderately with polyacrylohydrogel coated and uncoated charcoal, whereas the opposite was observed with cellulose coated charcoal.

Blood Cell Count

Is lactase the receptor and uncoating enzyme for infantile enteritis (rota) viruses?

Rotaviruses are now regarded as important causes of diarrhoea in man, cattle, pigs, mice, and possibly other animals. Characteristically, disease occurs in newborn and young animals, and infection seems limited to the differentiated gut epithelial cells. The major surface polypeptide of the calf scours rotavirus is glycosylated, and highly purified beta-galactosidase (lactase) interacts with the virus in vitro causing removal of the outer shell of the capsid (uncoating). It is suggested that lactase present in the brush border of the intestinal epithelial cell performs a similar function in vivo by acting as a combined receptor and uncoating enzyme for the rotavirus. This hypothesis is consistent with the observations that rotaviruses seem to infect only gut epithelial cells, and that infant animals, whose lactase concentrations are generally higher than those of adult animals, seem more susceptible to rotavirus infections. Implications of the hypothesis include possible new approaches to laboratory cultivation of rotaviruses, which should be more successful in cells selected for surface lactase activity, and the suggestion that the epidemiology of human rotavirus infections may be influenced by the fact that different ethnic groups have different lactase levels (and hence lactose intolerance) in adulthood.

Acute Disease

Biocompatibility of coated and uncoated charcoal during haemoperfusion in healthy dogs.

The biocompatibility of two commercially available charcoal columns, one containing coated and the other uncoated but immobilized charcoal, was compared during four haemoperfusions with each in eight healthy greyhounds. Reductions in arterial levels of platelets (49% and 42% respectively) and leucocytes (both 21%) were similar. Microaggregates, detected by the Swank screen filtration pressure technique, were found in blood leaving the columns during three of the four perfusions with each column. Another twelve perfusions with the uncoated column were carried out with the addition of one or other of the following three agents which inhibit platelet aggregation: sulfinpyrazone, dipyridamole, or citrate-phosphate-dextrose. With none of these were platelet losses less as compared with the four perfusions in which heparin only was used. However, rises in screen filtration pressure were less pronounced. In other perfusions, where its dosage was varied, heparin was shown to reverse, and in large doses delay, the appearance of micro-aggregates. Thrombus in the column itself may be a source of microaggregates, but platelet aggregation in the absence of thrombus deposition may be responsible. The relation of these findings to micro-aggregate formation, which has constituted a clinical problem during charcoal haemoperfusion in humans with fulminant hepatic failure, is considered.

Animals

Adsorption, penetration, and uncoating of murine leukemia virus studied by using its reverse transcriptase.

A procedure using the virus-associated reverse transcriptase was developed for following the kinetics of adsorption, penetration, and uncoating of murine leukemia virus. Viral adsorption to cell membrane was determined by assaying this enzyme activity in isolated debris of mechanically disrupted cells after infection with murine leukemia virus in the presence of actinomycin D. At 37 degrees C, viral adsorption proceeded at a high initial rate, but after 5 min of incubation with the virus, it gradually slowed down. At 4 degrees C, viral adsorption was slower but proceeded at a linear rate. Intracellular virus was determined by centrifuging the cytoplasmic fraction of the disrupted cells at 105,000 x g for 45 min and assaying reverse-transcriptase activity in the high-speed pellet thus obtained. Sucrose gradient analysis of the enzyme activity recovered from the cytoplasm of infected cells indicated that this activity represented intact virus particles. No appreciable amount of such particles was recovered from the cytoplasm of cells infected at 4 degrees C. This indicates that the virions recovered from the cytoplasm of cells infected at 37 degrees C are indeed intracellular virus particles which penetrated into the cells and not just membrane-bound particles mechanically released to the cytoplasmic fraction during cell disruption. By this procedure intracellular virus was found to accumulate in the cytoplasm, reaching a maximal level within 20 min. The accumulated intracellular virus particles gradually disappeared from the cytoplasm, evidently due to their uncoating which was completed within 80 min.

Adsorption

Intracytoplasmic uncoated capsids of human cytomegalovirus.

It has been generally accepted that capsids found in the cytoplasm of infected fibroblasts by adapted strain human cytomegalovirus (CMV) have bristle-like surface coating on them. This coating was said to be one of the important differences of CMV from herpes simplex virus. As well known, capsids of CMV increased in their over-all diameter through the process of moving from the nucleus to the cytoplasm. In some instances, however, uncoated capsids were detected in the cytoplasmic portions especially in the vicinity of tubular structures in the cytoplasm. It seemed that these uncoated capsids might be formed in the cytoplasm but had not emigrated from the nucleus.

Capsid

Polar uncoating of tobacco mosaic virus (TMV) with dimethylsulfoxide (DMSO) and subsequent reassembly of partially stripped TMV.

Increasing concentrations of dimethylsulfoxide (DMSO) strip tobacco mosaic virus (TMV) stepwise from the 3'end. The RNA tail increases in length up to 2,000 nucleotides (nu) reaching a region of very strong protein-RNA affinity. Thereafter, uncoating occurs from the other end and produces a second RNA tail 500 nu long. Further stripping of TMV proceeds from both ends, the long tail increasing in length up to 4,000 nu and the short one increasing more moderately and remaining below 2,000 nu. The region of strongest protein-RNA affinity is located between 4,000 and 5,000 nu away from the 3' end. Using the same conditions as for in vitro TMV reassembly, it is possible to recoat the RNA tails with viral protein preferentially in the 5' direction. The advantages of DMSO in studies of TMV protein-RNA interactions are discussed.

Dimethyl Sulfoxide

Circular dichroism of intermediate subviral particles of reovirus. Elucidation of the mechanism underlying the specific monovalent cation effects on uncoating.

1. Circular dichroic (CD) spectra of purified intermediate subviral particles of reovirus were determined in the presence of different monovalent cations. 2. The CD spectra reveal that reo intermediate subviral particles can exist in two conformationally different forms. The two forms are readily distinguished by comparison of their ellipticities in the wavelength regions 210 nm and 220 nm, with a Na+-induced form exhibiting a reduced negative ellipticity relative to a Cs+-induced form. 3. The transition between the Na+- and Cs+-induced forms is reversible by manipulation of the species of monovalent cation present and appears to be temperature independent. 4. Temperature variation studies on dilute suspensions of particles indicate that the Na+-induced form is stable, whereas the Cs+-induced from undergoes a second transition, temperature dependent and irreversible, to become a viral core. 5. A model is presented relating these observations to the known properties of reovirus uncoating and transcriptase activation.

Cesium

Effects of hardness on the disintegration time and the dissolution rate of uncoated caffeine tablets.

The effects of hardness on disintegration and dissolution characteristics of uncoated caffeine tablets made at eight different pressure levels were studied. The disintegration times were determined using the J.P. VIII procedure with disks and the dissolution rate measurements were performed with the U.S.P.XVIII procedure (U.S.P. method) and the J.P. VIII disintegration test apparatus (J.P. method). A good correlation between the hardness and the disintegration times was obtained. The dissolution rate constants were determined from the equation of Noyes & Whitney (1897) and a good correlation between the hardness and the dissolution rate constants was obtained. The hardness governed the dissolution over all the stages from tablet to the smallest particles after the breakage by disintegration. The dissolution rates of the J.P. method were greater than those of the U.S.P. method.

Caffeine

Rapid preparation of uncoated biological specimens for scanning electron microscopy.

We have developed a relatively rapid glutaraldehyde-tannic acid (GTA) and osmium tetroxide (OsO4) fixation procedure which permits many types of uncoated biological specimens to be examined in the scanning electron microscope (SEM) at 20 kV without the occurrence of charging. Most specimens taken one day can be examined in the SEM the following afternoon. Types of specimens successfully treated were perfused adult and embryonic rat tissues, confluent human skin fibroblast tissue cultures, plant roots, flowers, seeds, some garden insects, and microcolonies of salivary streptococci. Cells in suspension and extracted human teeth did become electron conductive when treated with the GTA procedure. Most suspended cells must be centrifuged between each solution and the GTA procedure increases the preparation time for these cells. Extracted teeth are usually simply dried and coated. Therefore, the usual SEM preparation techniques are shorter and perhaps more useful for these types of specimens.

Animals

[Plastic replacement of the abdominal wall by uncoated carbon cloth. An animal experiment on the rabbit (author's transl)].

Carbon cloth is a new biomaterial which is suitable for the replacement of ligaments and connective tissues, because of its biological and physical properties. In 30 rabbits a defect was cut into the abdominal wall. In 20 the defect was covered by an implanted carbon cloth. The other 10 animals were used as controls. After implantation wound healing was excellent. No herniation could be observed in the group with the implants. After 3 months histological examinations revealed the ingrowth of collagen fibres into the carbon cloth. It had become a strong and resilient abdominal wall replacement. A physical-strength test showed stability of the newly formed abdominal wall with good anchorage to normal tissue.

Abdominal Muscles