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D Kay

Publications and source records attributed to D Kay.

At least 73 records · Page 4Linked to original sources

Temporal dissociation of late events in Bacillus subtilis sporulation from expression of genes that determine them.

During sporulation in replacement medium, resistance to toluene to heating at 65 degrees C, to lysozyme, and to heating at 80 degrees C appeared in sequence between 4 and 8 h after the induction of sporulation (i.e., between t4 and t8). The addition of sufficient chloramphenicol at t4.5 to prevent protein synthesis nevertheless allowed the emergence of all of these types of resistance except lysozyme resistance. The numbers of spores with these types of resistance (lysozyme resistance again excepted) increased about fourfold when phenylmethylsulfonyl fluoride (an inhibitor of serine protease activity) was also present. Thus, the observed increases in resistance in the 2 h after the addition of chloramphenicol resulted from the utilization of preformed protein elements. Dipicolinate did not seem to be a determining factor in the development of any of these forms of resistance. Electron micrographs showed that inhibition of protein synthesis did not prevent deposition of the outer layers of the spores. Lysozyme resistance developed differently; synthesis of the relevant proteins began later (t5), and continued synthesis was necessary up to t8. Some processing of proteins made earlier was a prerequisite for lysozyme resistance. Therefore, it appears that from the viewpoint of regulation, the expression of the genes and the production of the proteins for resistance to toluene, heating at 65 degrees C, and heating at 80 degrees C are all stage IV sporulation events, although the resistance properties themselves appear only during stages V and VI. Lysozyme resistance is the only real late event among those examined. The germination characteristics of the spores, which are also late events, are discussed in this context, as they too are dependent on proteins that are synthesized much earlier.

Bacillus subtilis↗

Nonfunctional and functional occlusal contacts: a review of the literature.

A review of the literature on occlusal contacts emphasizes the following points. 1. Contacts in centric occlusion do not correspond to any ideal occlusal diagram. 2. Canine protection and group function appear to correspond to two successive states of the evolving dentition under the effect of abrasion. In most lateral occlusions, two maxillary teeth, of which one is the canine, are involved. 3. During mastication, tooth contacts exist. They occur most often during a sliding movement in which the direction and the origin are variable. This justifies the concept of an occlusal field of mastication. 4. During unilateral mastication, the chewing of the food is performed by working as well as nonworking contact. This imposes the distinction between the chewing and nonchewing sides (functional) and the working and nonworking sides (kinematic). 5. Centric occlusion is the occlusion most often used during mastication. It is also the occlusion for which the masticatory forces are the greatest. 6. The bibliographic data concerning occlusal contracts during swallowing are largely contradictory. It nevertheless seems that the occlusal contacts obey laws nearly the same as those governing the occlusal contact during mastication (sliding on an occlusal field of deglutition, and the importance of centric occlusion).

Deglutition↗

Wall structure of the Neurospora hyphal apex: immunofluorescent localization of wall surface antigens.

Antisera have been raised in rabbits against three wall fractions from Neurospora crassa. Fractions were separated according to Mahadevan & Tatum (1965), i.e. fraction I, glucan-peptide-galactosamine complex; fraction III, laminarin-like glucan; and fraction IV, chitin. Distinct patterns of immunofluorescent staining were obtained using an indirect staining method. Hyphae stained with antiserum to fraction I showed maximum fluorescence in the apical and/or subapical regions: in both cases, fluorescence showed a sharp decrease with distance behing the subapical region. Hyphae stained with antiserum to fraction III showed faintly fluorescent tips with fluorescence increasing with distance from the tip. Hyphae stained with antiserum to fraction IV showed faint fluorescence, equivalent to levels of autofluorescence, except at the sites of hyphal fractures. Antisera were also raised against whole walls from 24 and 120 h cultures. Hyphae stained with antisera against whole walls which had previously been absorbed to remove antibodies to fractions I, III, and IV showed preferential staining of apices. The uncharacterized tip antigen(s) thus revealed was also demonstrated on immunodiffusion plates. This pattern of immunofluorescence was compared to the fluorescence of apices after staining with an optical brightener. Enzymic dissection procedures did not generally give reliable results with apices from 24 h cultures. Untreated apices appeared amorphous, while a drastic chemical treatment revealed randomly oriented microfibrils which were shown to be alpha-chitin. The apical hyphal walls were significantly thinner than those from more mature hyphal regions.

Antigens, Fungal↗

Acremonium falciforme as a cause of mycetoma in California.

Three cases of mycetoma were studied in the San Francisco Bay area of northern California during the period from 1960 to 1973. In each case the causal agent was identified on the basis of the histological structure of the granules and by isolation of the etiological agent in pure culture. The fungus in all cases was found to be Acremonium falciforme. This is the first report of A. falciforme occurring as a disease agent in the United States.

Adult↗

Sporulation in Bacillus subtilis. Effect of medium on the form of chromosome replication and on initiation to sporulation in Bacillus subtilis.

Thymine-requiring mutants of Bacillus subtilis and mutants that are temperature-sensitive for initiation of chromosome replication have been used to study the relationship between sporulation and chromosome formation. The DNA synthesis that normally occurs when cells are transferred to sporulation medium is essential for spore induction. This is shown by the fact that thymine-starved cells are unable to form spores and are unable to perform even the earlier steps of sporulation, such as septum formation or synthesis of alkaline phosphatase. The nature of the medium in which the cells are growing while the DNA is being completed is also important because it determines both the shape and the position of the daughter chromosomes. If the cells are in a rich medium, the newly synthesized chromosomes are discrete and compact bodies: the cells are primed for growth, and sporulation cannot be induced by transferring them at this stage to a spore-inducing medium. If DNA synthesis was completed with the cells in a poor medium the daughter chromosomes, by the time DNA synthesis has ceased, are spread in a single filamentous band and the cells are morphologically already in stage I of sporulation.

Alkaline Phosphatase↗

Sporulation in Bacillus subtilis. Correlation of biochemical events with morphological changes in asporogenous mutants.

A comparison was made of morphological changes and successive, mainly biochemical, marker events for sporulation in 14 asporogenous mutants. The morphological and biochemical sequences are linked so that arrested development in one is accompanied by corresponding effects in the other. Thus mutants that fail to produce both protease and antibiotic do not progress beyond stage 0, formation of alkaline phosphatase appears to be associated with the transition from stage II to stage III and glucose dehydrogenase with that from stage III to stage IV. Stage II mutants may produce ;pygmy' cells or other bizarre cell-division forms. The biochemical sequence is dependent in the sense that if the occurrence of any one event is blocked that of all the succeeding events is also blocked. This has implications for biochemical models that have been proposed to explain the temporal sequence observed in spore development.

Alcohol Oxidoreductases↗

Sporulation in Bacillus subtilis. Morphological changes.

1. When Bacillus subtilis was grown in a medium in which sporulation occurred well-defined morphological changes were seen in thin sections of the cells. 2. Over a period of 7.5hr. beginning 2hr. after the initiation of sporulation the following major stages were observed: axial nuclear-filament formation, spore-septum formation, release of the fore-spore within the cell, development of the cortex around the fore-spore, the laying down of the spore coat and the completion of the corrugated spore coat before release of the spore from the mother cell. 3. The appearance of refractile bodies and 2,6-dipicolinic acid and the development of heat-resistance began between 5 and 6.5hr. after initiation of sporulation. 4. The appearance of 2,6-dipicolinic acid and the onset of refractility appeared to coincide with a diminution of electron density in the spore core and cortex. 5. Heat-resistance was associated with the terminal stage, the completion of the spore coat. 6. The spore coat was composed of an inner and an outer layer, each of which consisted of three or four electron-dense laminae. 7. Serial sections through cells at an early stage of sporulation showed that the membranes of each spore septum were always continuous with the membranes of a mesosome, which was itself in close contact with the bacterial or spore nucleoid. 8. These changes were correlated with biochemical events occurring during sporulation.

Bacillus subtilis↗