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排序方式: 共有400条查询结果,搜索用时 296 毫秒
101.
Valerie Le Fourn Sujin Park Insook Jang Katarina Gaplovska-Kysela Bruno Guhl Yangsin Lee Jin Won Cho Christian Zuber Jürgen Roth 《Cellular and molecular life sciences : CMLS》2013,70(11):1985-2002
Multisubunit protein complexes are assembled in the endoplasmic reticulum (ER). Existing pools of single subunits and assembly intermediates ensure the efficient and rapid formation of complete complexes. While being kinetically beneficial, surplus components must be eliminated to prevent potentially harmful accumulation in the ER. Surplus single chains are cleared by the ubiquitin–proteasome system. However, the fate of not secreted assembly intermediates of multisubunit proteins remains elusive. Here we show by high-resolution double-label confocal immunofluorescence and immunogold electron microscopy that naturally occurring surplus fibrinogen Aα–γ assembly intermediates in HepG2 cells are dislocated together with EDEM1 from the ER to the cytoplasm in ER-derived vesicles not corresponding to COPII-coated vesicles originating from the transitional ER. This route corresponds to the novel ER exit path we have previously identified for EDEM1 (Zuber et al. Proc Natl Acad Sci USA 104:4407–4412, 2007). In the cytoplasm, detergent-insoluble aggregates of fibrinogen Aα–γ dimers develop that are targeted by the selective autophagy cargo receptors p62/SQSTM1 and NBR1. These aggregates are degraded by selective autophagy as directly demonstrated by high-resolution microscopy as well as biochemical analysis and inhibition of autophagy by siRNA and kinase inhibitors. Our findings demonstrate that different pathways exist in parallel for ER-to-cytoplasm dislocation and subsequent proteolytic degradation of large luminal protein complexes and of surplus luminal single-chain proteins. This implies that ER-associated protein degradation (ERAD) has a broader function in ER proteostasis and is not limited to the elimination of misfolded glycoproteins. 相似文献
102.
103.
Rohmann E Brunner HG Kayserili H Uyguner O Nürnberg G Lew ED Dobbie A Eswarakumar VP Uzumcu A Ulubil-Emeroglu M Leroy JG Li Y Becker C Lehnerdt K Cremers CW Yüksel-Apak M Nürnberg P Kubisch C Kubisch C Schlessinger J van Bokhoven H Wollnik B 《Nature genetics》2006,38(4):414-417
Lacrimo-auriculo-dento-digital (LADD) syndrome is characterized by lacrimal duct aplasia, malformed ears and deafness, small teeth and digital anomalies. We identified heterozygous mutations in the tyrosine kinase domains of the genes encoding fibroblast growth factor receptors 2 and 3 (FGFR2, FGFR3) in LADD families, and in one further LADD family, we detected a mutation in the gene encoding fibroblast growth factor 10 (FGF10), a known FGFR ligand. These findings increase the spectrum of anomalies associated with abnormal FGF signaling. 相似文献
104.
Germline KRAS mutations cause Noonan syndrome 总被引:22,自引:0,他引:22
Schubbert S Zenker M Rowe SL Böll S Klein C Bollag G van der Burgt I Musante L Kalscheuer V Wehner LE Nguyen H West B Zhang KY Sistermans E Rauch A Niemeyer CM Shannon K Kratz CP 《Nature genetics》2006,38(3):331-336
Noonan syndrome (MIM 163950) is characterized by short stature, facial dysmorphism and cardiac defects. Heterozygous mutations in PTPN11, which encodes SHP-2, cause approximately 50% of cases of Noonan syndrome. The SHP-2 phosphatase relays signals from activated receptor complexes to downstream effectors, including Ras. We discovered de novo germline KRAS mutations that introduce V14I, T58I or D153V amino acid substitutions in five individuals with Noonan syndrome and a P34R alteration in a individual with cardio-facio-cutaneous syndrome (MIM 115150), which has overlapping features with Noonan syndrome. Recombinant V14I and T58I K-Ras proteins show defective intrinsic GTP hydrolysis and impaired responsiveness to GTPase activating proteins, render primary hematopoietic progenitors hypersensitive to growth factors and deregulate signal transduction in a cell lineage-specific manner. These studies establish germline KRAS mutations as a cause of human disease and infer that the constellation of developmental abnormalities seen in Noonan syndrome spectrum is, in large part, due to hyperactive Ras. 相似文献
105.
Gain-of-function RAF1 mutations cause Noonan and LEOPARD syndromes with hypertrophic cardiomyopathy 总被引:14,自引:0,他引:14
Pandit B Sarkozy A Pennacchio LA Carta C Oishi K Martinelli S Pogna EA Schackwitz W Ustaszewska A Landstrom A Bos JM Ommen SR Esposito G Lepri F Faul C Mundel P López Siguero JP Tenconi R Selicorni A Rossi C Mazzanti L Torrente I Marino B Digilio MC Zampino G Ackerman MJ Dallapiccola B Tartaglia M Gelb BD 《Nature genetics》2007,39(8):1007-1012
Noonan and LEOPARD syndromes are developmental disorders with overlapping features, including cardiac abnormalities, short stature and facial dysmorphia. Increased RAS signaling owing to PTPN11, SOS1 and KRAS mutations causes approximately 60% of Noonan syndrome cases, and PTPN11 mutations cause 90% of LEOPARD syndrome cases. Here, we report that 18 of 231 individuals with Noonan syndrome without known mutations (corresponding to 3% of all affected individuals) and two of six individuals with LEOPARD syndrome without PTPN11 mutations have missense mutations in RAF1, which encodes a serine-threonine kinase that activates MEK1 and MEK2. Most mutations altered a motif flanking Ser259, a residue critical for autoinhibition of RAF1 through 14-3-3 binding. Of 19 subjects with a RAF1 mutation in two hotspots, 18 (or 95%) showed hypertrophic cardiomyopathy (HCM), compared with the 18% prevalence of HCM among individuals with Noonan syndrome in general. Ectopically expressed RAF1 mutants from the two HCM hotspots had increased kinase activity and enhanced ERK activation, whereas non-HCM-associated mutants were kinase impaired. Our findings further implicate increased RAS signaling in pathological cardiomyocyte hypertrophy. 相似文献
106.
Thye T Owusu-Dabo E Vannberg FO van Crevel R Curtis J Sahiratmadja E Balabanova Y Ehmen C Muntau B Ruge G Sievertsen J Gyapong J Nikolayevskyy V Hill PC Sirugo G Drobniewski F van de Vosse E Newport M Alisjahbana B Nejentsev S Ottenhoff TH Hill AV Horstmann RD Meyer CG 《Nature genetics》2012,44(3):257-259
After imputation of data from the 1000 Genomes Project into a genome-wide dataset of Ghanaian individuals with tuberculosis and controls, we identified a resistance locus on chromosome 11p13 downstream of the WT1 gene (encoding Wilms tumor 1). The strongest signal was obtained at the rs2057178 SNP (P = 2.63 × 10(-9)). Replication in Gambian, Indonesian and Russian tuberculosis case-control study cohorts increased the significance level for the association with this SNP to P = 2.57 × 10(-11). 相似文献
107.
Christian Marx 《Archive for History of Exact Sciences》2012,66(5):531-555
In Book 8 of his Geographike Hyphegesis Ptolemy gives coordinates for ca. 360 so-called noteworthy cities. These coordinates are the time difference to Alexandria, the length of the longest day, and partly the ecliptic distance from the summer solstice. The supposable original conversions between the coordinates in Book 8 and the geographical coordinates in the location catalogue of Books 2–7 including the underlying parameters and tabulations are here reconstructed. The results document the differences between the ${\Omega}$ - and ${\Xi}$ -recension. The known difference in the longitude of Alexandria underlying the conversion of the longitudes is examined more closely. For the ecliptic distances from the summer solstice of the ${\Omega}$ -recension, it is revealed that they were originally computed by means of a so far undiscovered approximate, linear conversion. Further it is shown that the lengths of the longest day could be based on a linear interpolation of the data in the Mathematike Syntaxis 2.6. 相似文献
108.
Floriano?Rodrigues Imke?Schmidt Christian?Kl?mbtEmail author 《Cellular and molecular life sciences : CMLS》2011,68(1):55-69
In all complex organisms, the peripheral nerves ensure the portage of information from the periphery to central computing
and back again. Axons are in part amazingly long and are accompanied by several different glial cell types. These peripheral
glial cells ensure electrical conductance, most likely nuture the long axon, and establish and maintain a barrier towards
extracellular body fluids. Recent work has revealed a surprisingly similar organization of peripheral nerves of vertebrates
and Drosophila. Thus, the genetic dissection of glial differentiation in Drosophila may also advance our understanding of basic principles underlying the development of peripheral nerves in vertebrates. 相似文献
109.
Hoischen A van Bon BW Rodríguez-Santiago B Gilissen C Vissers LE de Vries P Janssen I van Lier B Hastings R Smithson SF Newbury-Ecob R Kjaergaard S Goodship J McGowan R Bartholdi D Rauch A Peippo M Cobben JM Wieczorek D Gillessen-Kaesbach G Veltman JA Brunner HG de Vries BB 《Nature genetics》2011,43(8):729-731
Bohring-Opitz syndrome is characterized by severe intellectual disability, distinctive facial features and multiple congenital malformations. We sequenced the exomes of three individuals with Bohring-Opitz syndrome and in each identified heterozygous de novo nonsense mutations in ASXL1, which is required for maintenance of both activation and silencing of Hox genes. In total, 7 out of 13 subjects with a Bohring-Opitz phenotype had de novo ASXL1 mutations, suggesting that the syndrome is genetically heterogeneous. 相似文献
110.
Lausch E Janecke A Bros M Trojandt S Alanay Y De Laet C Hübner CA Meinecke P Nishimura G Matsuo M Hirano Y Tenoutasse S Kiss A Rosa RF Unger SL Renella R Bonafé L Spranger J Unger S Zabel B Superti-Furga A 《Nature genetics》2011,43(2):132-137
Vertebral and metaphyseal dysplasia, spasticity with cerebral calcifications, and strong predisposition to autoimmune diseases are the hallmarks of the genetic disorder spondyloenchondrodysplasia. We mapped a locus in five consanguineous families to chromosome 19p13 and identified mutations in ACP5, which encodes tartrate-resistant phosphatase (TRAP), in 14 affected individuals and showed that these mutations abolish enzyme function in the serum and cells of affected individuals. Phosphorylated osteopontin, a protein involved in bone reabsorption and in immune regulation, accumulates in serum, urine and cells cultured from TRAP-deficient individuals. Case-derived dendritic cells exhibit an altered cytokine profile and are more potent than matched control cells in stimulating allogeneic T cell proliferation in mixed lymphocyte reactions. These findings shed new light on the role of osteopontin and its regulation by TRAP in the pathogenesis of common autoimmune disorders. 相似文献