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V A Lewis  G M Hynes  D Zheng  H Saibil  K Willison 《Nature》1992,358(6383):249-252
The murine t-complex encodes t-complex polypeptide-1 (TCP1), which is constitutively expressed in almost all cells, and upregulated during spermatogenesis. Mammalian sequences have greater than 96% identity with each other, and greater than 60% identity with Drosophila melanogaster and yeast orthologues. TCP1 is essential in yeast, and is postulated to be the cytosolic mammalian equivalent of groEL. We report here that, in the native state, murine and human TCP1 is distributed throughout the cytosol as an 800K-950K hetero-oligomeric particle in association with four to six unidentified proteins and two Hsp70 heat-shock proteins. Negative-stain electron microscopy indicates that the structure is two stacked rings, 12-16 nm in diameter. Therefore, despite similarities with the chaperonin 60 proteins, these data indicate that TCP1 is biochemically and structurally unique. We suggest that TCP1 may represent one of a family of molecules in the eukaryotic cytosol involved in protein folding and regulated in part by their heteromeric associations.  相似文献   

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Microtubule-associated protein 1C from brain is a two-headed cytosolic dynein   总被引:34,自引:0,他引:34  
R B Vallee  J S Wall  B M Paschal  H S Shpetner 《Nature》1988,332(6164):561-563
Dynein, an ATPase, is the force-generating protein in cilia and flagella. It has long been speculated that cytoplasmic microtubules contain a related enzyme involved in cell division or in intracellular organelle transport. A 'cytoplasmic dynein' has been described in sea urchin eggs, but because the egg stockpiles precursors for both cytoplasmic and ciliary microtubules, the role of this enzyme in the cell has remained unresolved. We recently found that the microtubule-associated protein (MAP) 1C (ref. 6) from brain is a microtubule-activated ATPase that produces force in the direction corresponding to retrograde organelle transport in the cell. MAP 1C has several similar properties to ciliary and flagellar dynein. Here we show directly, using scanning transmission electron microscopy, that MAP 1C is structurally equivalent to the ciliary and flagellar enzyme and is the long-sought cytoplasmic analogue of this enzyme.  相似文献   

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RIM1alpha is required for presynaptic long-term potentiation.   总被引:8,自引:0,他引:8  
Two main forms of long-term potentiation (LTP)-a prominent model for the cellular mechanism of learning and memory-have been distinguished in the mammalian brain. One requires activation of postsynaptic NMDA (N-methyl d-aspartate) receptors, whereas the other, called mossy fibre LTP, has a principal presynaptic component. Mossy fibre LTP is expressed in hippocampal mossy fibre synapses, cerebellar parallel fibre synapses and corticothalamic synapses, where it apparently operates by a mechanism that requires activation of protein kinase A. Thus, presynaptic substrates of protein kinase A are probably essential in mediating this form of long-term synaptic plasticity. Studies of knockout mice have shown that the synaptic vesicle protein Rab3A is required for mossy fibre LTP, but the protein kinase A substrates rabphilin, synapsin I and synapsin II are dispensable. Here we report that mossy fibre LTP in the hippocampus and the cerebellum is abolished in mice lacking RIM1alpha, an active zone protein that binds to Rab3A and that is also a protein kinase A substrate. Our results indicate that the long-term increase in neurotransmitter release during mossy fibre LTP may be mediated by a unitary mechanism that involves the GTP-dependent interaction of Rab3A with RIM1alpha at the interface of synaptic vesicles and the active zone.  相似文献   

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目的:为制备重组小鼠Pem(以下简称mPem)-谷胱甘肽巯基转移酶(GST)融合蛋白,作为研究mPem蛋白功能的材料,方法:根据携带小鼠Pem基因编码序列的模板质粒pEGFP/mPem设计合成特异性引物,PCR扩增小鼠Pem基因编码序列,并插入融合蛋白原核表达载体pGEX-4T-3中,得到重组表达质粒pGEX-4T-3/mPem,用此重组质粒转化大肠杆菌BL21细胞,IPTG诱导重组菌表达mPem蛋白,SDS-PAGE及Western Blot鉴定表达产物。结果:重组菌株明显诱导表达出预期相对分子质量49000的融合蛋白。结论:成功构建了mPem-GST原核表达质粒,并在大肠杆菌中表达出mPem-GST融合蛋白,为mPem蛋白功能的研究打下了基础。  相似文献   

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Serum amyloid P-component is an acute-phase reactant in the mouse.   总被引:28,自引:0,他引:28  
M B Pepys  M Baltz  K Gomer  A J Davies  M Doenhoff 《Nature》1979,278(5701):259-261
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Dystrophin is associated with a complex of muscle membrane (sarcolemmal) glycoproteins that provide a linkage to the extracellular matrix protein, laminin. The absence of dystrophin leads to a dramatic reduction of the dystrophin-associated proteins (156DAG, 59DAP, 50DAG, 43DAG and 35DAG) in the sarcolemma of patients with Duchenne muscular dystrophy and mdx mice. Here we demonstrate that dystrophin-related protein (DRP, utrophin), an autosomal homologue of dystrophin, is associated with an identical or antigenically similar complex of sarcolemmal proteins and that DRP and the dystrophin/DRP-associated proteins colocalize to the neuromuscular junction in Duchenne muscular dystrophy and mdx muscle. The DRP and dystrophin/DRP-associated proteins are found throughout the sarcolemma in small-calibre skeletal muscles and cardiac muscle of adult mdx mice. Because these muscles show minimal pathological changes, our results could provide a basis for the upregulation of DRP as a potential therapeutic approach.  相似文献   

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Morphine abstinence is associated with increased brain cyclic AMP.   总被引:10,自引:0,他引:10  
H O Collier  D L Francis 《Nature》1975,255(5504):159-162
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Changes in concentration of polyamines in the developing mouse brain   总被引:3,自引:0,他引:3  
H Shimizu  Y Kakimoto  I Sano 《Nature》1965,207(5002):1196-1197
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