نتایج جستجو برای: tetanus toxin

تعداد نتایج: 58433  

Journal: :FEBS letters 1994
B Höhne-Zell A Ecker U Weller M Gratzl

Exocytosis of secretory granules by adrenal chromaffin cells is blocked by the tetanus toxin light chain in a zinc specific manner. Here we show that cellular synaptobrevin is almost completely degraded by the tetanus toxin light chain within 15 min. We used highly purified adrenal secretory granules to show that synaptobrevin, which can be cleaved by the tetanus toxin light chain, is localized...

Journal: :The Journal of Cell Biology 1985
D R Critchley P G Nelson W H Habig P H Fishman

We examined the nature of the tetanus toxin receptor in primary cultures of mouse spinal cord by ligand blotting techniques. Membrane components were separated by sodium dodecyl sulfate-polyacrylamide gel electrophoresis and transferred to nitrocellulose sheets, which were overlaid with 125I-labeled tetanus toxin. The toxin bound only to material at or near the dye front, which was lost when th...

Journal: :Journal of neurochemistry 1988
M A Bittner R W Holz

Tetanus exotoxin inhibited Ca2+-dependent catecholamine secretion in a dose-dependent manner in digitonin-permeabilized chromaffin cells. The inhibition was specific for tetanus exotoxin and the B fragment of tetanus toxin; the C fragment had no effect. Inhibition required the introduction of toxin into the cell, and was not seen when intact cells were preincubated with the toxin or toxin fragm...

Journal: :Neuroscience 1992
G Dayanithi U Weller G Ahnert-Hilger H Link J J Nordmann M Gratzl

The effects of tetanus toxin and its light and heavy chain subunits on vasopressin release were investigated in digitonin-permeabilized neurosecretory nerve terminals isolated from the neural lobe of the rat pituitary gland. Exocytosis was induced by challenging the permeabilized nerve endings with micromolar calcium concentrations. Tetanus toxin inhibited vasopressin release only in the presen...

Journal: :Brazilian journal of medical and biological research = Revista brasileira de pesquisas medicas e biologicas 2007
M H Sonobe A G Trezena F B Guilhen V L Takano F Fratelli D Sakauchi J F Morais S M A Prado H G Higashi

A method for the screening of tetanus and diphtheria antibodies in serum using anatoxin (inactivated toxin) instead of toxin was developed as an alternative to the in vivo toxin neutralization assay based on the toxin-binding inhibition test (TOBI test). In this study, the serum titers (values between 1.0 and 19.5 IU) measured by a modified TOBI test (Modi-TOBI test) and toxin neutralization as...

Journal: :Infection and immunity 1985
C S Lin W H Habig M C Hardegree

Tetanus toxoid elicits protective antibodies against tetanus toxin in humans and animals. It has been reported that antitoxin from immunized humans contains no anti-light chain antibodies, based on immunodiffusion and quantitative precipitin analyses. We confirmed the absence of precipitating anti-light chain antibodies in tetanus immune globulin. However, the presence of antibodies against the...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 1979
S Ramos E F Grollman P S Lazo S A Dyer W H Habig M C Hardegree H R Kaback L D Kohn

Accumulation of the permeant lipophilic cation [(3)H]tetraphenylphosphonium (TPP(+)) by synaptosome preparations from guinea pig brain cerebral cortex is inhibited 1:10 by medium containing 193 mM K(+) and by veratridine. A further 1:10 to 1:15 decrease in TPP(+) uptake occurs under nitrogen and in the presence of mitochondrial inhibitors such as oligomycin, whereas starvation and succinate sup...

2010
Felix L. Yeh Min Dong Jun Yao William H. Tepp Guangyun Lin Eric A. Johnson Edwin R. Chapman

Tetanus neurotoxin causes the disease tetanus, which is characterized by rigid paralysis. The toxin acts by inhibiting the release of neurotransmitters from inhibitory neurons in the spinal cord that innervate motor neurons and is unique among the clostridial neurotoxins due to its ability to shuttle from the periphery to the central nervous system. Tetanus neurotoxin is thought to interact wit...

Journal: :The Journal of clinical investigation 1983
B F Haynes K Shimizu G S Eisenbarth

Using a monoclonal antibody (A2B5), which binds to GQ ganglioside, and tetanus toxin, which binds to GD and GT gangliosides, distinct regions of human and rodent thymic epithelial cells have been identified. The lymphoid elements of the thymus do not bind A2B5 or tetanus toxin. The A2B5 and tetanus toxin-binding cells form a network of thymic epithelial cells throughout the thymic subcapsular c...

Journal: :Nippon Saikingaku Zasshi 1966

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