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排序方式: 共有79条查询结果,搜索用时 46 毫秒
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Radioimmunoassay of luteinizing hormone releasing hormone 总被引:1,自引:0,他引:1
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Summary Oogenesis ceases in virgin Monarch butterflies at about 10 days posteclosion, but an enhanced production of mature oocytes occurs after mating. Juvenile hormone injections into virgins, and allatectomies of mated females, indicate that the observed fluctuations in oogenesis are due to periods of corpora allata activity and inactivity.Supported by USPHS, grant HD-07336.The assistance of T. F. Scirwudo is very much appreciated. 相似文献
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Identification of a ferrireductase required for efficient transferrin-dependent iron uptake in erythroid cells 总被引:10,自引:0,他引:10
Ohgami RS Campagna DR Greer EL Antiochos B McDonald A Chen J Sharp JJ Fujiwara Y Barker JE Fleming MD 《Nature genetics》2005,37(11):1264-1269
The reduction of iron is an essential step in the transferrin (Tf) cycle, which is the dominant pathway for iron uptake by red blood cell precursors. A deficiency in iron acquisition by red blood cells leads to hypochromic, microcytic anemia. Using a positional cloning strategy, we identified a gene, six-transmembrane epithelial antigen of the prostate 3 (Steap3), responsible for the iron deficiency anemia in the mouse mutant nm1054. Steap3 is expressed highly in hematopoietic tissues, colocalizes with the Tf cycle endosome and facilitates Tf-bound iron uptake. Steap3 shares homology with F(420)H(2):NADP(+) oxidoreductases found in archaea and bacteria, as well as with the yeast FRE family of metalloreductases. Overexpression of Steap3 stimulates the reduction of iron, and mice lacking Steap3 are deficient in erythroid ferrireductase activity. Taken together, these findings indicate that Steap3 is an endosomal ferrireductase required for efficient Tf-dependent iron uptake in erythroid cells. 相似文献
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Mutation in the gene encoding ferritin light polypeptide causes dominant adult-onset basal ganglia disease. 总被引:15,自引:0,他引:15
A R Curtis C Fey C M Morris L A Bindoff P G Ince P F Chinnery A Coulthard M J Jackson A P Jackson D P McHale D Hay W A Barker A F Markham D Bates A Curtis J Burn 《Nature genetics》2001,28(4):350-354
We describe here a previously unknown, dominantly inherited, late-onset basal ganglia disease, variably presenting with extrapyramidal features similar to those of Huntington's disease (HD) or parkinsonism. We mapped the disorder, by linkage analysis, to 19q13.3, which contains the gene for ferritin light polypeptide (FTL). We found an adenine insertion at position 460-461 that is predicted to alter carboxy-terminal residues of the gene product. Brain histochemistry disclosed abnormal aggregates of ferritin and iron. Low serum ferritin levels also characterized patients. Ferritin, the main iron storage protein, is composed of 24 subunits of two types (heavy, H and light, L) which form a soluble, hollow sphere. Brain iron deposition increases normally with age, especially in the basal ganglia, and is a suspected causative factor in several neurodegenerative diseases in which it correlates with visible pathology, possibly by its involvement in toxic free-radical reactions. We found the same mutation in five apparently unrelated subjects with similar extrapyramidal symptoms. An abnormality in ferritin strongly indicates a primary function for iron in the pathogenesis of this new disease, for which we propose the name 'neuroferritinopathy'. 相似文献
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Paternal origin of new mutations in von Recklinghausen neurofibromatosis 总被引:19,自引:0,他引:19
D Jadayel P Fain M Upadhyaya M A Ponder S M Huson J Carey A Fryer C G Mathew D F Barker B A Ponder 《Nature》1990,343(6258):558-559
Von Recklinghausen neurofibromatosis (NF-1) is a common autosomal dominant disorder. The estimated new mutation rate (1 x 10(-4] is one of the highest for a human disorder. Here we report that in 12 of 14 families we have analysed, the new mutation is of paternal origin. This result is similar to that recently obtained for retinoblastoma. In other genetic disorders that show a bias towards paternal origin of new mutations, there is a marked increase in the incidence of mutations with paternal age, consistent with the mutations arising from replication errors in mitosis of spermatogonial stem cells. In retinoblastoma and NF-1, however, such paternal age effects are slight or absent. The mechanism or timing of germline mutation could therefore be different in the two cases. 相似文献