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941.
942.
Craig E. Franklin 《Journal of morphology》1990,206(1):13-23
Sockeye salmon were transferred rapidly from freshwater to seawater and the changes in gill morphology, in particular the distribution and sizes of chloride and mucous cells on the afferent filamental surface examined. Salmon that successfully adapted to seawater were compared with salmon that did not adapt to seawater and died as a consequence of osmoregulatory failure. The number of mucus cells (density), determined from scanning electron microscopy, increased significantly after seawater challenge. A greater increase in mucus cell density occurred in the salmon that failed to adapt to seawater. Light microscopy of transverse sections of gills detected no difference in mucus cell numbers after seawater challenge. It is proposed that mucus cells that lie just beneath the gill epithelium are activated in response to the seawater challenge, and migrate and open onto the epithelium. Freshwater-adapted salmon that had low densities of chloride cells prior to the seawater challenge failed to adapt, whereas salmon that had high densities of chloride cells adapted successfully to seawater. In the latter, the density of chloride cells on the afferent surface decreased after 30 days in seawater. The apical surface of the chloride cells of freshwater-adapted sockeye were either smooth or covered with microvilli. A greater proportion of microvilli-covered chloride cells occurred in the freshwater-adapted salmon that subsequently adapted to seawater. 相似文献
943.
The structure of the groups of nine hexons from adenovirus 总被引:3,自引:0,他引:3
944.
Ádám Fekete Laura Franklin Takeshi Ikemoto Balázs Rózsa Balázs Lendvai E. Sylvester Vizi Tibor Zelles 《Journal of neurochemistry》2009,111(3):745-756
Although the role of Na+ in several aspects of Ca2+ regulation has already been shown, the exact mechanism of intracellular Ca2+ concentration ([Ca2+]i) increase resulting from an enhancement in the persistent, non‐inactivating Na+ current (INa,P), a decisive factor in certain forms of epilepsy, has yet to be resolved. Persistent Na+ current, evoked by veratridine, induced bursts of action potentials and sustained membrane depolarization with monophasic intracellular Na+ concentration ([Na+]i) and biphasic [Ca2+]i increase in CA1 pyramidal cells in acute hippocampal slices. The Ca2+ response was tetrodotoxin‐ and extracellular Ca2+‐dependent and ionotropic glutamate receptor‐independent. The first phase of [Ca2+]i rise was the net result of Ca2+ influx through voltage‐gated Ca2+ channels and mitochondrial Ca2+ sequestration. The robust second phase in addition involved reverse operation of the Na+–Ca2+ exchanger and mitochondrial Ca2+ release. We excluded contribution of the endoplasmic reticulum. These results demonstrate a complex interaction between persistent, non‐inactivating Na+ current and [Ca2+]i regulation in CA1 pyramidal cells. The described cellular mechanisms are most likely part of the pathomechanism of certain forms of epilepsy that are associated with INa,P. Describing the magnitude, temporal pattern and sources of Ca2+ increase induced by INa,P may provide novel targets for antiepileptic drug therapy. 相似文献
945.
Cellular lipid and the anti-staphylococcal activity of phenols 总被引:1,自引:0,他引:1
946.
Deoxyribonucleic acid from a streptomycin-resistant mutant of Pasteurella novicida transformed portions of P. novicida streptomycin-sensitive populations to streptomycin-resistant. Similarly, mutants auxotrophic for tryptophan or purine biosynthesis were also transformed to nutritional independence. 相似文献
947.
Escherichia coli UvrA, UvrB and UvrC proteins acting in concert remove the major ultraviolet light-induced photoproduct, the pyrimidine dimer, from DNA in the form of a 12 to 13-nucleotide long single-stranded fragment. In vivo data indicate that the UvrABC enzyme is also capable of removing other nucleotide diadducts as well as certain nucleotide monoadducts from DNA and initiating the repair process that leads to removal of interstrand crosslinks caused by some bifunctional chemical agents. We have determined the action mechanism of the enzyme on nucleotide monoadducts produced by 4'-hydroxymethyl-4,5',8-trimethylpsoralen and N-acetoxy-N-2-acetylaminofluorene. In both cases we find that the enzyme hydrolyzes the eighth phosphodiester bond 5' and the fifth phosphodiester bond 3' to the modified base. This cutting pattern is similar to that observed with diadduct substrate, the only difference being that while the enzyme incises the fourth or fifth phosphodiester bond 3' to the pyrimidine dimer it always hydrolyzes the fifth bond relative to monoadducts. Our results also suggest that ABC excinuclease cuts the same two phosphodiester bonds on both sides of a T whether that T has a psoralen monoadduct or is involved in psoralen-mediated interstrand crosslink. 相似文献
948.
949.
950.
A disease in mink has been discovered that has many of the features of collagen diseases in man. Affected animals suffer from wasting with leukopenia and thrombocytopenia as well as plasma cell infiltration, hypergammaglobulinemia, glomerulonephritis, arteritis and amyloidosis. Cell-free filtrates and ultracentrifugates from diseased animals induced the disease in normal mink, and aleutian genotypes were unusually susceptible to infection. This genotype was characterized by abnormal lysosomal structures in all the granule-forming cells, resembling the Chediak-Higashi syndrome of man. Anti-γ-globulin factors similar to human rheumatoid factors were reported, although tests for antibodies such as ANF and LE factors have been negative. Arteritis and glomerulonephritis lesions stained positively for γ-globulin, and Coombs-type sensitized red cells have been detected in the majority of affected mink. Some mink develop a monodispersion of hypergammaglobulinemia resembling the serum protein changes in human myeloma. These studies highlight genetic, immunological and microbiological causative factors in a mink disorder resembling human collagen disease. 相似文献