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Abstract— >The inactivation of the enzymes chymotrypsin, lysozyme, ribonuclease, and trypsin by ultraviolet light can be accounted for quantitatively by summing the products of (1) the probability that light is absorbed by a given amino acid residue, the molecular extinc tion coefficient, and (2) the probability that absorbed light induces a chemical change in the residue, the quantum yield for the residue. The principal residues involved are cystyl and tryptophanyl. Peptide bond rupture is not important. Energy transfer among chromophores within molecules of enzymes need not be invoked in order to account for photochemical inactivation.
Quantum yields for the destruction of a number of amino acids at 2537 A have been measured.  相似文献   
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Abstract— In attempting to sort out possible mechanisms of photoreactivation of tobacco mosaic virus RNA (TMV-RNA) inactivated by ultraviolet radiation (u.v.) in buffer of ionic strength 0.25, we have investigated the effect of HCN on the quantum yield for u.v. inactivation of TMV-RNA and on the percent photoreactivation of inactivated TMV-RNA. Some photo-products produced by irradiation of model substances, polyuridylic acid (poly U) and polycytidylic acid (poly C), in the presence of HCN have also been studied. The ratio of the quantum yield for inactivation of TMV-RNA in the presence of HCN to that in the absence of HCN is 1.5, under non-photoreactivating conditions. By comparison, the ratio of the initial rates of loss of uracil residues in poly U under comparable conditions is 1.6; by contrast, the rate of loss of cytosine residues in poly C is unaffected by HCN. This similarity of ratios between poly U and TMV-RNA suggests that two of the mechanisms of u.v. inactivation of TMV-RNA at high ionic strength are akin to known reactions of uracil residues in poly U, i.e. hydrate and dimer formation. The photohydration reaction in poly U, as measured by the heat reversal of hydrated residues to uracil residues, is almost abolished by HCN, and the rate of dimerization, as measured by the appearance of dimer containing oligonucleotides following enzymatic hydrolysis of irradiated poly U, is reduced to half by HCN. HCN does not affect the rate of hydration of cytosine residues in poly C. Since photoreactivation of RNA inactivated in presence of HCN is only 60 per cent of that in absence of HCN it is suggested that uracil dimers are somehow involved in photoreactivation of TMV-RNA inactivated at high ionic strength.  相似文献   
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The complexes [Co(tetren)dmf](ClO4)3 and [Co(tetren)-dmso](ClO4)3 have been prepared from alpha alpha-[Co(tetren)-Cl](ClO4)Cl (tetren=1,11-diamino-3,6,9-triazaundecane). 1H-n.m.r. and i.r. measurements confirm that the complexes contain O-bonded dmf and dmso. A biphasic reaction is observed in the base hydrolysis of the dmf derivative, monitored by the pH-stat method, with the fast reaction having kOH=1.2*104dm3mol-1s-1 and the slower reaction kOH=1.9*102dm3mol-1s-1 at 25degC and I=0.1moldm3. The fast reaction is assigned to the hydrolysis of the alpha beta(R)-[Co(tetren)dmf]3+ and the slower reaction to that of the alpha The reaction appears to proceed predominantly by a DCB pathway without parallel hydrolysis of coordinated dmf, which has been observed in the hydrolysis of [Co-(NH3)5dmf]3+. Base hydrolysis of [Co(tetren)dmso]3+ was monitored spectrophotometrically over the pH range 4.2 to 5.0. A single reaction was observed with kOH=1.9*106dm3mol-1 s-1 at 25°C and I=0.1 moldm-3. The rapid base hydrolysis is attributed to hydrolysis of the alpha beta(R)- or the alpha beta(S)-[Co(tetren)-dmso]3+ isomer rather than the alpha alpha-isomer. This revised version was published online in June 2006 with corrections to the Cover Date.  相似文献   
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Transonic trailing-edge flow   总被引:1,自引:0,他引:1  
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Devices and architectures for photonic chip-scale integration   总被引:1,自引:0,他引:1  
Silicon nanophotonics holds the promise of dramatically advancing the state of the art in computing by enabling parallel architectures that combine unprecedented performance and ease of use with affordable power consumption. This paper presents a design study for a many-core architecture called Corona which utilizes dense wavelength division multiplexing (DWDM) for on- and off-chip communication together with the devices which will be needed to implement such a communication infrastructure.  相似文献   
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