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Temperature-jump methods were used to study the kinetics of the helix to coil transition in three fragments of yeast tRNAPhe that share a common 5' terminus (the 5' end of the mature tRNA). Correlation of the extrapolated helix dissociation time constants with NMR exchange broadening results allows assignment of the structural basis of the optical melting transition in the fragments. The results confirm nuclear magnetic resonance findings on these fragments: the 5' 1/4 fragment has no helical structure; the 5' 1/2 fragment contains the D stem; and the 5' 3/5 fragment contains the D stem and the anticodon stem. These are the structures expected if sequential folding of the tRNA during biosynthesis were to occur. The D stem is the last helix to melt in the 5' 3/5 fragment. We suggest that structural elements in addition to the four Watson-Crick base pairs of the D-stem helix are responsible for the anomalously high Tm of that hairpin. 相似文献
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This paper presents measurements of foetal weights, haemoglobin concentrations, red cell counts, blood volumes, erythroblast thymidine labelling indices and cell cycle parameters in genetically anaemic, flexed-tailed ( f/f ) and haematologically normal ( f/+ ) foetuses.
The production of red blood cells from the livers of ( f/f ) foetal mice lags behind that of heterozygote ( f/+ ) foetuses, and the cells that are produced are small and poorly haemoglobinized. The anaemia is not due to an abnormal cell cycle in f/f erythroblasts, which appear to be capable of responding to the anaemia by a small increase in their rates of proliferation. The number of red cells in the foetal circulation can be calculated from the cell cycle time and number of hepatic erythroblasts; the calculated number agrees quite well with the measured number in both f/f and f/+ foetuses. Many characteristics of the anaemia of the f/f foetus can be accounted for if it is assumed that there is a deficiency in the production or activity of an enzyme involved early in the haem synthetic pathway. 相似文献
The production of red blood cells from the livers of ( f/f ) foetal mice lags behind that of heterozygote ( f/+ ) foetuses, and the cells that are produced are small and poorly haemoglobinized. The anaemia is not due to an abnormal cell cycle in f/f erythroblasts, which appear to be capable of responding to the anaemia by a small increase in their rates of proliferation. The number of red cells in the foetal circulation can be calculated from the cell cycle time and number of hepatic erythroblasts; the calculated number agrees quite well with the measured number in both f/f and f/+ foetuses. Many characteristics of the anaemia of the f/f foetus can be accounted for if it is assumed that there is a deficiency in the production or activity of an enzyme involved early in the haem synthetic pathway. 相似文献
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J J Phelan J Colom C Cozcolluela J A Subirana R D Cole 《The Journal of biological chemistry》1974,249(4):1099-1102
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