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951.
Karin M. Voss Lieselotte Herberg Prof. Dr. Horst F. Kern 《Cell and tissue research》1978,191(2):333-342
Summary A study of the pancreatic islets of Langerhans in the Djungarian hamster (Phodopus sungorus) was initiated by the observation that 98 percent of the animals of a recently established colony showed ketoacidosis soon after birth, about ten percent of which later developed persistent hyperglycemia. The islets are made up of a centrally located mass of insulin-producing B-cells surrounded by a peripheral rim of A-and D-cells. Most islets are richly supplied by unmyelinated nerve fibers which terminate on all three cell types with cholinergic synaptic endings. Early changes in islet fine structure due to ketosis comprise degranulation of A-cells combined with signs of crinophagia of -granules. After the manifestation of hyperglycemia, degranulation of B-cells is followed by deposition of glycogen which in the late phase of the diabetic syndrome forms large masses obscuring the regular cellular organelles. In six-to nine-month hyperglycemic animals degenerative changes are also observed in D-cells in the form of autophagic vacuoles.Dedicated to Professor Dr. Helmut Ferner, Vienna on the occasion of his 65th birthday 相似文献
952.
Horst Bohn 《Journal of insect physiology》1977,23(8):1063-1073
A partial characterization of a haemocyte derived conditioning factor which permits rapid in vitro outgrowth of insect epidermis (Leucophaea maderae) was attempted. The factor resisted denaturating agents such as heat (100°C), ethanol, acetone, formol, and acetic acid. It was not extractable by hot pyridine or detergent, nor destroyed by lipase, RNase, DNase, or glycolytic enzymes. The factor was, however, completely inactivated by all four proteolytic enzymes tested. Rabbit antisera were produced against a haemocyte homogenate and tested in vitro. One of the antisera contained antibodies against the conditioning factor. The nature and origin of the conditioning factor are discussed in some detail. 相似文献
953.
Ultrastructure of the cell wall regeneration of isolated protoplasts of Skimmia japonica thunb 总被引:1,自引:1,他引:0
Isolated protoplasts obtained from leaves and from stem callus cultures of Skimmia japonica were cultivated for 72 h to regenerate a new cell wall. During this process the structural changes in the protoplasts and at the surface of the plasmalemma were studied in ultrathin sections and after freeze-fracturing and deep-etching.The cultured protoplasts show an apparent increase in cell organelles compared to the freshly isolated protoplasts. In particular, mitochondria, endoplasmic reticulum, and ribosomes, many of them appear as polysomes, become numerous. Moreover, special connections between the ER and the plasmalemma are visible. Most important are the fracture faces of the plasmalemma with two different arrangements of membrane-bound particles: (1) particles in hexagonal arrays and (2) rows of ca. 14 particles. Their orientation usually conforms with that of the regenerated microfibrils of the cell wall. According to these results the following model for microfibril synthesis and orientation in higher plants is proposed: While the cytoplasmic activity is involved in the production of cellulose precursors and enzymes, the hexagonal arrays may respresent specialized regions for the outward passage of these cellulose precursors. The rows of membrane-associated particles may function as a linear enzyme complex (matrix) for microfibril biosynthesis and orientation.Abbreviations ER
endoplasmic reticulum
- IAA
-indolylacetic acid
- 2,4-D
2,4-dichlorophenoxy acetic acid 相似文献
954.
Managing the solvent water polarization to obtain improved NMR spectra of large molecular structures
Hiller S Wider G Etezady-Esfarjani T Horst R Wüthrich K 《Journal of biomolecular NMR》2005,32(1):61-70
In large molecular structures, the magnetization of all hydrogen atoms in the solute is strongly coupled to the water magnetization through chemical exchange between solvent water and labile protons of macromolecular components, and through dipole–dipole interactions and the associated “spin diffusion” due to slow molecular tumbling. In NMR experiments with such systems, the extent of the water polarization is thus of utmost importance. This paper presents a formalism that describes the propagation of the water polarization during the course of different NMR experiments, and then compares the results of model calculations for optimized water polarization with experimental data. It thus demonstrates that NMR spectra of large molecular structures can be improved with the use of paramagnetic spin relaxation agents which selectively enhance the relaxation of water protons, so that a substantial gain in signal-to-noise can be achieved. The presently proposed use of a relaxation agent can also replace the water flip-back pulses when working with structures larger than about 30 kDa. This may be a valid alternative in situations where flip-back pulses are difficult to introduce into the overall experimental scheme, or where they would interfere with other requirements of the NMR experiment.Supplementary material to this paper is available in electronic form at
http://dx.doi.org/10.1007/s10858-005-3070-8 相似文献
955.
Transcriptome analysis reveals cyclobutane pyrimidine dimers as a major source of UV-induced DNA breaks
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956.
Expression of transgenic stilbene synthases in wheat causes the accumulation of unknown stilbene derivatives with antifungal activity 总被引:7,自引:0,他引:7
The expression of foreign phytoalexins in a new host is thought to increase fungal resistance, since host-specific pathogens have not experienced selection for detoxifying or metabolising the novel antifungal compounds. Two resveratrol synthase genes vst1 and vst2 from grapevine (Vitis vinifera L.) and the pinosylvin synthase gene pss from pine (Pinus sylvestris L.) were stably transformed into bread wheat. The expression of the target genes is regulated by stress-inducible grapevine promoters. The vst1 and vst2 promoters were functional in wheat and retained their expression profiles described for grapevine. ALL vst and pss transgenic lines accumulated stilbene derivatives upon induction by UV light. The detected stilbenes showed a remarkable similarity to resveratrol and pinosylvin, however were found to be more hydrophilic than resveratrol and pinosylvin. Upon inoculation with the biotrophic pathogen Puccinia recondita f.sp. tritici several vst expressing wheat lines showed a significant reduction of disease symptoms (19 +/- 9% to 27 +/- 8%) compared to wild-type plants. The reduction of disease symptoms was even more obvious after inoculation with the facultative biotrophic pathogen Septoria nodorum Berk. and ranged from 42 +/- 13% to 71 +/- 4%. None of the four tested pss expressing lines showed a reduction in disease incidence. 相似文献
957.
958.
959.
Haupt M Bramkamp M Coles M Kessler H Altendorf K 《Journal of molecular microbiology and biotechnology》2005,10(2-4):120-131
P-type ATPases are amongst the most abundant enzymes that are responsible for active transport of ions across biological membranes. Within the last 5 years a detailed picture of the structure and function of these transport ATPases has emerged. Here, we report on the recent progress in elucidating the molecular mechanism of a unique, prokaryotic member of P-type ATPases, the Kdp-ATPase. The review focuses on the catalytic parts of the central subunit, KdpB. The structure of the nucleotide-binding domain was solved by NMR spectroscopy at high resolution and a model of the nucleotide-binding mode was presented. The nucleotide turned out to be 'clipped' into the binding pocket by a pi-pi interaction to F377 on one side and a cation-pi interaction to K395 on the other. The 395KGXXD/E motif and thus the nucleotide-binding mode seems to be conserved in all P-type ATPases, except the heavy metal-transporting (class IB) ATPases. Hence, it can be concluded that KdpB is currently misgrouped as class IA. Mutational studies on two highly conserved residues (D583 and K586) in the transmembrane helix 5 of KdpB revealed that they are indispensable in coupling ATP hydrolysis to ion translocation. Based on these results, two possible pathways for the reaction cycle are discussed. 相似文献
960.
Enoksson M Fernandes AP Prast S Lillig CH Holmgren A Orrenius S 《Biochemical and biophysical research communications》2005,327(3):774-779
Human mitochondrial glutaredoxin 2 (Grx2) catalyzes glutathione-dependent dithiol reaction mechanisms, reducing protein disulfides, and monothiol reactions, reducing mixed disulfides between proteins and GSH (de-/glutathionylation). Here, we have overexpressed Grx2 in HeLa cells in its mitochondrial form (mGrx2-HeLa) as well as a truncated cytosolic form, lacking the mitochondrial translocation signal (tGrx2-HeLa). The resulting clones were less susceptible to apoptosis induced by 2-deoxy-d-glucose (2-DG) or doxorubicin (Dox). Overexpression of Grx2 inhibited cytochrome c release and caspase activation induced by both agents. In addition, Grx2 prevented 2-DG- and Dox-induced loss of cardiolipin, the phospholipid anchoring cytochrome c to the inner mitochondrial membrane. Overexpression of mGrx2 provided better protection than tGrx2 overexpression, especially after treatment with 2-DG. We propose that Grx2 facilitates the maintenance of cellular redox homeostasis upon treatment with apoptotic agents, thereby preventing cardiolipin oxidation and cytochrome c release. 相似文献