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101.
RA Kumar 《Clinical genetics》2008,74(4):343-344
De novo mutations in the gene encoding STXBP1 (MUNC18‐1) cause early infantile epileptic encephalopathy
Saitsu et al. (2008)
Nature Genetics 40: 782–788  相似文献   
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Pro-B cells are early B-cell progenitors that retain macrophage potential. We have studied MHC class II molecules and invariant chain inducibility on four class II negative mouse pro- B-cell clones. We analyzed the effects of IL-4 and IFN-γ, which represent the major inducers of class II in the B-lymphoid and monocytic/macrophage lineages, respectively. After 48 h of treatment with either cytokine, three pro-B-cell clones (C2.13, A1.5, and F2.2) expressed intracellular invariant chain and cell-surface class II molecules. One clone (D2.1) remained negative. As already reported, more differentiated 70Z/3 pre-B cells were inducible by IL-4 only. These data suggest that the induction of class II and invariant-chain genes are subject to regulation throughout B-cell differentiation.  相似文献   
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Tay-Sachs and Sandhoff diseases are autosomal recessive neurodegenerative diseases resulting from the inability to catabolize GM2 ganglioside by beta-hexosaminidase A (Hex A) due to mutations of the alpha subunit (Tay-Sachs disease) or beta subunit (Sandhoff disease) of Hex A. Hex B (beta beta homodimer) is also defective in Sandhoff disease. We previously developed mouse models of both diseases and showed that Hexa-/- (Tay-Sachs) mice remain asymptomatic to at least 1 year of age while Hexb-/- (Sandhoff) mice succumb to a profound neurodegenerative disease by 4-6 months of age. Here we find that neuron death in Hexb-/- mice is associated with apoptosis occurring throughout the CNS, while Hexa-/- mice were minimally involved at the same age. Studies of autopsy samples of brain and spinal cord from human Tay-Sachs and Sandhoff diseases revealed apoptosis in both instances, in keeping with the severe expression of both diseases. We suggest that neuron death is caused by unscheduled apoptosis, implicating accumulated GM2 ganglioside or a derivative in triggering of the apoptotic cascade.   相似文献   
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Induction of the anti-ergotypic response   总被引:1,自引:0,他引:1  
The injection of syngeneic activated T cells into rodents caninduce a T cell response against activation markers of the Tcells, ergotopes. The responding antl-ergotypic T cells havebeen shown to suppress experimental autoimmune encephalomyelitis(EAE). This paper reports the characteristics of the antl-ergotypicresponse. It was found that irradiated activated T cells wereas good as untreated living activated T cells in inducing anti-ergotypiccells in vivo. Glutardialdehyde-fixed (0.3%) cells were poorstimulators in vivo and non-stimulatory in vitro. Dilution ofglutardialdehyde to 0.003% before fixation preserved the stimulatorycapacity in vitro. Fixation or irradiation of T cells at differenttimes after activation showed that the stimulatory ergotopeappears only after more than 12 h of activation. This ergotopeis not secreted by activated T cells, but is a structural componentof the activated T cell. Injection of solubilized proteins fromactivated T cells, but not of supernatants from activated Tcells, was able to induce an anti-ergotypic response in vivo.In vitro supernatants from activated T cells also were not stimulatoryto anti-ergotypic T cells. The anti-ergotypic response couldbe measured in draining lymph nodes 3 days after injection,reached a maximum after 7–10 days and subsided thereafter.It was earlier and stronger than the anti-ldiotypic response.Induction of the response was dose dependent. As few as 100cells were able to induce a marked anti-ergotypic response.The ease of the induction and the strength of the anti-ergotypicresponse suggest a physiological role in immunoregulatlon.  相似文献   
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