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Biomedical subjects

J L James

Publications and source records attributed to J L James.

At least 19 recordsLinked to original sources

Temperature sensitivity of the keratin cytoskeleton and delayed spreading of keratinocyte lines derived from EBS patients.

Point mutations in the keratin intermediate filament genes for keratin 5 or keratin 14 are known to cause hereditary skin blistering disorders such as epidermolysis bullosa simplex, in which epidermal keratinocytes are extremely fragile and the skin blisters on mild trauma. We show that in 2 phenotypically diverse cases of epidermolysis bullosa simplex, the keratin mutations result in a thermoinstability of the intermediate filament cytoskeleton which can be reproducibly demonstrated even in the presence of tissue culture-induced keratins and in conditions where filament fragility is not otherwise obvious. SV40-T antigen and HPV16 (E6--E7) immortalised keratinocyte cell lines were examined, established from control and epidermolysis bullosa simplex-affected individuals with either severe (Dowling-Meara) or mild (Weber-Cockayne) forms of the disease. In standard tissue culture conditions no significant and consistent abnormality of the keratin cytoskeleton could be demonstrated. However after thermal stress a reduced stability of the keratin filaments was demonstrable in the epidermolysis bullosa simplex cell lines, with filaments breaking into aggregates similar to those seen in skin from EBS patients. These aggregates were maximal at 15 minutes after heat shock and the filament network structure was substantially reversed by 60 minutes. Differences were also seen in the cells during respreading after replating: cells containing mutant keratins were slower to respread than controls and fine aggregates were seen at the cell margins in the Dowling-Meara derived cell line. Such delays in restoring the normal intermediate filament network after physiological processes involving cytoskeleton remodelling may render the cells vulnerable to cytolysis in vivo if physically challenged during this time window. The steady reduction in the mitotic index of the epidermis during the first few years of life could then explain the clinical improvement which is frequently observed in growing children.

Cell Line

An ultrastructural study of ependymal cell differentiation during lizard (Gallotia galloti) midbrain development.

Ependymal cell differentiation was examined in the lizard Gallotia galloti from E31 to adult. From E31 to E34 only one type of cell could be identified making up the pseudostratified columnar neuroepithelium but by E35 to E37 three types of ependymal cell were present. The first type was a narrow, elongated, columnar cell containing rough endoplasmic reticulum filled with an amorphous ground substance similar to that of astrocytes. The second type was broader with the nucleus close to the ventricular surface with numerous lipid droplets of varying sizes in the cytoplasm. The third type had an irregularly shaped apical nucleus and a broad basal process probably extending to the pial surface. The process contained numerous microtubules, glycogen granules and a few filaments. From E38 to hatching the ependyma showed marked regional variation. Much of it was formed by a single layer of moderately dark cuboidal cells but parts were made up of a low columnar epithelium in which the cells had elongated nuclei, frequently indented on the ventricular side. Cilia were common and often cells had cytoplasmic protrusions into the ventricle. Lipid was present in the form of small apical droplets or a large basal droplet. Ependymal cells in the region of the sulcus limitans were packed with lipid as were cells of the adjacent subventricular layer. In the adult the ependymal lining varied from cuboidal to low columnar with nuclear chromatin usually arranged in a reticulated pattern. Two types of ependymal process extending to the pia could be identified. One type was packed with microfilaments whilst the other contained a core of microtubules and scattered glycogen granules. Lipid was still present in the cells of the sulcus limitans.

Animals

Phenobarbital pretreatment alters the localization of CCl4-induced changes in rat liver microsomal fatty acids.

Phenobarbital treatment induces an isozyme(s) of liver microsomal cytochrome P450 susceptible to CCl4 and enhances the latter's lethality. We have now studied phenobarbital's effect on the specificity of phosphatidyl fatty acid changes in rat liver microsomes. Male Sprague-Dawley rats were pretreated with three daily ip doses of phenobarbital (50 mg/kg) or saline and then orally dosed with CCl4 (2.5 ml/kg). Liver microsomes were prepared 7.5 to 180 min after CCl4 treatment, the lipid fraction was extracted, diene conjugate content was determined, and phospholipids were separated by HPLC for fatty acid content determination. Protein, phospholipid, and phosphatidyl fatty acid residue loss occurred early (7.5 to 30 min) and in some cases later (60 to 180 min) in both pretreated groups, suggesting that two phases of CCl4-mediated injury occurred. Phenobarbital pretreatment accelerated the CCl4-induced formation of diene conjugates in the microsomal lipids. In studies on the separated phospholipids, phenobarbital alone altered microsomal fatty acid content, primarily decreasing arachidonic acid in favor of linoleate, particularly in phosphatidylserine. During the early phase of CCl4 injury, phenobarbital pretreatment shifted the major loss of arachidonic acid from phosphatidylserine to phosphatidylethanolamine. During the later phase, arachidonic acid loss was still prominent, but the most extensive CCl4-induced changes in fatty acids occurred in the neutral lipid fraction, regardless of pretreatment. These changes included loss of neutral lipid linoleic and docosahexanoic acids associated with an increase in palmitic acid. These data demonstrate that phenobarbital pretreatment is associated with a shift in the predominant phospholipid locus from phosphatidylserine to phosphatidylethanolamine for the early CCl4-induced fatty acid changes in rat liver microsomes.

Animals

An ultrastructural study of the development of astrocytes in the midbrain of the lizard.

Astrocyte development was investigated electron microscopically in the midbrain of the lizard Gallotia galloti from E32 to adult. At E32 only very immature (early) glioblasts were present in the midbrain and similar cells could be found until hatching. From E34 two other types of glioblast could be identified--dark glioblasts which had a slightly greater amount of cytoplasm than early glioblasts and light glioblasts, in which cytoplasmic organelles were more abundant. Both dark and light glioblasts were present in very small numbers in the adults. Astroblasts, which could be identified by the characteristic appearance of their rough endoplasmic reticulum, first appeared at E35, at which stage a few very immature astrocytes containing small quantities of gliofilaments were also present. With increasing age the quantity of gliofilaments in astrocyte cytoplasm increased. Astrocytes in the adult white matter contained very large amounts of gliofilaments whereas those in grey matter contained many fewer gliofilaments and had glycogen granules in their cytoplasm which were rarely present in mature fibrous astrocytes.

Animals

An ultrastructural study of the development of oligodendrocytes in the midbrain of the lizard.

Oligodendrocyte development was investigated in the midbrain of the lizard Gallotia galloti using the electron microscope. Oligodendroblasts, which had a pale cytoplasm containing numerous microtubules in the perikaryon and processes, were present from E35. Active oligodendrocytes had a pale nucleus, usually containing a nucleolus, and an electron-dense cytoplasm with long parallel stacks of rough endoplasmic reticulum. These were present from E37 to hatching which coincides with the period of rapid myelination. The three types of oligodendrocyte (light, medium and dark) first classified by Mori & Leblond (1970) in the rat could be identified in the lizard. Light oligodendrocytes were present at all ages from E37 to adult. Medium oligodendrocytes first appeared at E40 and dark oligodendrocytes were present at all ages from hatching onwards.

Animals

Comparison of in vivo 31P-MR spectra of the brain, liver, and kidney of adult and infant animals.

In vivo 31P-magnetic resonance spectroscopy (MRS) was used to determine the phosphorus metabolite levels in the brain and kidney of infant rabbits and adult rats and in the liver of infant rabbits and adult and infant rats. For 31P-MRS of the brain, a surface, radiofrequency coil was placed on the anterosuperior region of the head; for 31P-MRS of the liver and kidney, a radiofrequency coil was chronically implanted either between the hepatic lobes or around the kidney. 31P-MR spectra were found to show large variations in the levels of the phosphorus metabolites depending on the species, the organ, and the age of the animal. The phosphate monoester (MP)/adenosine triphosphate (ATP) ratio was significantly higher and the phosphocreatine (PCr)/ATP ratio was significantly lower in the brains of infant rabbits than in the brains of adult rats. Comparison of these data with data reported for humans and other animals suggests that these differences are due mainly to differences in age and not to differences among species. The phosphodiester (PD)/ATP ratio was found to be significantly higher in the livers of infant rabbits than in the livers of adult and infant rats - a difference more likely related to the species than to age. The kidneys of the infant rabbits showed a higher PCr/ATP radio than the kidneys of the adult rats, but this difference might be due to the influence of PCr in the surrounding muscle.

Adenosine Triphosphate

NADPH-dependent and -independent loss of cytochrome P-450 in control and phenobarbital-induced rat hepatic microsomes incubated with carbon tetrachloride.

Carbon tetrachloride-mediated loss of cytochrome P-450 has been compared in hepatic microsomes from untreated and phenobarbital-treated rats. At concentrations of carbon tetrachloride greater than 2.5 mM, a direct effect (i.e., NADPH- independent) on cytochrome P-450 was observed. This apparently arose from the "solvent" properties of carbon tetrachloride as this effect could be duplicated with the physically similar alkyl halide 1,2-dibromo-3-chloropropane. NADPH-dependent loss of cytochrome P-450 occurred at lower concentrations with maximal response occurring at 2.5-5.0 mM. Residual cytochrome P-450 at these concentrations was similar in untreated and phenobarbital-treated microsomes. Mixed-function oxidase activities in phenobarbital-treated microsomes were reduced to levels below those of uninduced controls. The 52-kDa polypeptide(s) in untreated microsomes and that specifically induced in phenobarbital-treated microsomes were susceptible to NADPH-dependent carbon tetrachloride incubation. These data suggest that the susceptibility of specific forms of cytochrome P-450 to carbon tetrachloride can be duplicated in in vitro incubation. Furthermore, data on the direct action of carbon tetrachloride suggest that this route of damage must be taken into consideration when concentrations of carbon tetrachloride of 2.5 mM or greater are used in in vitro incubation systems.

Animals

Unusual arrangements of endoplasmic reticulum in large oocytes of the golden hamster.

Endoplasmic reticulum complexes consisting of up to twenty layers of rough cisternae interleaved with rounded vesicles of semismooth membrane have been observed in large oocytes of the hamster in animals older than 3 weeks of age. The appearance of the complexes varies with the mode of tissue preparation. The possible function of the complexes is discussed.

Animals

Paired cisternae of endoplasmic reticulum in developing ovarian oocytes of the golden hamster.

Paired cisternae of rough endoplasmic reticulum linked together by two parallel structures exhibiting periodic striations have been observed in the cytoplasm of small pre-antrum oocytes in the golden hamster. They are present only in oocytes from animals older than 3 weeks of age. Two or more such pairs may be associated with one another, and similar structures have been observed in contact with the nuclear envelope. The peak incidence of the paired membranes coincides with a sharp increase in rough endoplasmic reticulum as the oocyte commences rapid growth. A suggested role for the paired membranes in production of new endoplasmic reticulum is discussed.

Animals

Alterations in hepatocyte plasma membrane in carbon tetrachloride poisoning. Freeze-fracture analysis of gap junction and electron spin resonance analysis of lipid fluidity.

The plasmalemma of the livers of rats treated with carbon tetrachloride (CCl4) were examined by freeze-fracture and electron spin resonance probe techniques. The rodents received by mouth either mineral oil alone (0 to 4.5 hours before sacrifice) or CCl4 in mineral oil (1:1) (2.5 ml of CCl4/kg, 0 to 3 hours before sacrifice). Rats were anesthetized with ether and livers were perfused in situ with saline either at ambient temperature or at 4 degrees C. After perfusion, livers were fixed in situ and processed for freeze-fracture and electron microscopy. Hepatocytes were isolated and incubated with 12-doxylstearic acid and subjected to electron spin resonance analysis. Electron microscopy revealed greater than a 2.5-fold increase in the individual mean gap junction size when rats were treated with mineral oil alone for 4.5 hours and the livers were processed at room temperature. The mean gap junction size in rats dosed with CCl4 for 0.5 hours before sacrifice equalled those of the group treated with mineral oil for 4.5 hours. Increases in gap junction size with CCl4 were progressive with time; by 3 hours, a 3.5-fold increase over controls was observed (p less than 0.05). When livers were perfused with iced saline, rats treated with mineral oil for 1.5 hours had a slight decrease (not significant) in mean gap junction size as compared to controls, while the size in rats treated for the same amount of time with CCl4 increased almost 5-fold over controls (p less than 0.05).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Changing patterns of cerium reactivity in developing ovarian oocytes of the hamster.

In developing ovarian oocytes of 2-day-old, 12-day-old and adult hamsters, oxidative enzyme activity as demonstrated by the cerium technique is strongest at 12 days and occurs principally in those oocytes which have begun rapid growth. The reaction is associated with the outer mitochondrial membrane, nearby cytoplasm, endoplasmic reticulum and nuclear envelope. Once antrum formation has begun and the mitochondria have reached the dormant (storage) stage, cerium reactivity ceases. In adults, reaction occurs at the same stages of oocyte development but is weaker and limited to the mitochondria and their immediate vicinity.

Age Factors

Age-dependent alterations in the physicochemical properties of rat liver microsomes.

Aging results in a significant decline in liver drug metabolism which is largely attributable to changes in the microsomal mixed function oxidase system. For example, the mixed function oxidase system in the livers of senescent rats is characterized by: (1) a reduced cytochrome P-450 content; (2) a decline in the specific activity of NADPH-cytochrome c (P-450) reductase; and (3) a slower rate of ethylmorphine N-demethylation in comparison to young adult animals. Since several factors intrinsic to the microsomes may influence the efficacy of the mixed function oxidase system, e.g. the phospholipid and cholesterol contents, the saturation index of the fatty acids and the fluidity of the membranes, we conducted a physicochemical analysis of liver microsomes isolated from young adult (3-4 months), mature (12-16 months) and senescent (25-27 months) male Fischer rats. Although the microsomal cholesterol content did not change appreciably between maturity and senescence, there was a marked decline in the total phospholipid content. This resulted in a significant increase in the cholesterol/phospholipid ratio, 0.49 to 0.65 between 16 and 27 months of age. The age-related changes in the total phospholipid content were largely reflected in each of the major fractions, i.e. phosphatidylcholine, phosphatidylinositol and phosphatidylethanolamine + phosphatidylserine. Small increases in the relative percentages of highly unsaturated fatty acid species were offset by similar decreases in the more frequent and more saturated species as a function of increased age. As a result, the net change in the fatty acid saturation index was probably minimal. However, the increase in the cholesterol/phospholipid ratio most likely contributes to the significant decline in the order parameter of microsomes isolated from old rats which, in turn, may impair the functional capacity of the hepatic mixed function oxidase system.

Aging

Enzyme studies on TPPase-reactive cytoplasmic structures observed in early meiotic prophase I of the hamster oocyte.

Ovaries of immature and adult hamsters were incubated in medium containing thiamine pyrophosphate (TPP) to determine the age at which TPPase-reactive cytoplasmic structures first appear in the germ cells, and at what age the structures cease to be present. The structures were found only in oocytes from animals 8-15 days of age. They occur in predictyate germ cells in polyovular follicles and in very early dictyate oocytes in unilaminar follicles. The TPPase-reactive structures were never observed in atretic oocytes, in unilaminar follicles of adult animals, nor in multilaminar follicles of animals at any age. Ovaries of 8-12-day-old animals and adults were then incubated in media in which one of the following substrates was substituted for TPP: uridine diphosphate (UDP), inosine diphosphate (IDP), and adenosine monophosphate (AMP). Half of the samples in each experiment were incubated in medium containing the inhibitor L-p-bromotetramisole. beta-Glycerophosphate was used in control incubations, or the substrate was omitted entirely. The cytoplasmic structures were found to be reactive after incubation in UDP-containing media, but not after incubation in media containing AMP. With IDP as substrate, reactions were atypical and confined to peripheral regions of the cytoplasm. Other sites of enzyme activity after incubation with the various substrates (cell membranes, zona pellucida, endoplasmic reticulum and Golgi apparatus) are also described and discussed.

Aging

The phospholipids of the hepatic endoplasmic reticulum. Structural change in liver injury.

Endoplasmic-reticulum phospholipids were measured during the first hour after carbon tetrachloride administration to male Sprague-Dawley rats and compared with carbon tetrachloride challenge of microsomes from control animals in vitro. The extracted lipids were separated by high-pressure liquid chromatography. No significant differences in the abundance of phosphatidylserine, phosphatidylethanolamine, phosphatidylinositol or phosphatidylcholine were found after either treatment when compared with untreated controls. Diene conjugate formation in each separated phospholipid was determined by measuring A(232) and expressed on the basis of lipid phosphorus. Phosphatidylserine was peroxidized 6-fold greater than in controls after challenge in vivo, reaching maximal change after 15min, whereas the other phospholipids showed little or no alteration. Fatty acid composition analysis was performed by g.l.c. after transesterification of individual phospholipids. Phosphatidylserine revealed two types of response: an abrupt decrease in relative abundance of oleic acid (C(18:1)) and linoleic acid (C(18:2)) without further loss and a slower, linear decrease in arachidonic acid (C(20:4)) over the first hour. Similar changes were not seen in other phospholipids. In the ;in vitro' model, the relative amounts of the phospholipids do not change. The extent of peroxidation was greater in all the phospholipids than found in vivo, with phosphatidylserine peroxidized to the greatest extent. These data suggest that carbon tetrachloride injury in vivo produces an early peroxidative event and that a specific phospholipid (phosphatidylserine) is selectively modified, although maintaining its relative concentration in the membrane. Dissection of this process in vitro will require refinement of existing systems to reduce the non-specific changes associated with the model system.

Adenosine Diphosphate

Differentiation of endoplasmic reticulum in the developing oocyte of the golden hamster (Mesocricetus auratus).

The differentiation of the endoplasmic reticulum (ER) in the developing oocyte of the golden hamster is accompanied by changes in susceptibility to impregnation with a zinc iodide-osmium tetroxide (ZnOs) mixture. The staining of two of the three categories of oocyte ER is first seen at or about the time when rapid oocyte growth is initiated. Staining reaches a peak before antrum formation, then declines. A third category of ER remains unstained at all stages. Aberrant reactivity to ZnOs is seen on oocytes which become atretic, and differs with the stage of oocyte development at which atresia occurs. Relationships between the three categories are described, and an attempt made to relate changes in form and distribution to developmental processes. The frequent contact/continuity between ER and mitochondria is discussed with regard to its possible role in lipid metabolism.

Age Factors