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Résumé Le cytoplasme du foie de têtard contient une enzyme qui hydrolyse spécifiquement les protéines basiques telle que la polylysine, la protamine et les histones. L'addition d'autres protéines telles que l'albumine, la globuline et l'acide polyglutamique inhibe l'activité de cette enzyme. Les résultats obtenus montrent que cette hydrolysase extraite du foie de têtard diffère des cathépsines ou de l'histone-hydrolase du rein de rat.

This work was supported by research grants from the National Institute of Arthritis and Metabolic Diseases No. AM 09602, National Science Foundation No. GB-22663 and from the National Cancer Institute No. CA 07174.  相似文献   
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Today, a growing number of third-generation semiconductor-based power devices are used in products that can continuously operate at high temperatures for extended periods of time. Hence, traditional tin-lead and lead-free solders are no longer suitable for modern electronic packaging. A common method is to apply Ag paste for bare Cu–Cu joints under an inert or reductive atmosphere. In this study, the citrate-coated nanosized Ag paste was utilized to generate robust bare Cu–Cu joints under atmospheric conditions. The average size of citrate-coated Ag particles was approximately 4.76 ?nm after being cleaned by deionized water and acetone. The effects of process parameters, such as cleaning, joining temperature, holding time, and joining pressure, on the mechanical properties of the bare Cu–Cu joints were thoroughly investigated. Increasing washing and joining temperatures resulted in a shear strength increase of up to 28.2 ?MPa ?at a joining temperature of 260 ?°C after seven washes. In addition, a holding time of 30 ?min and a joining pressure of 1 ?MPa were selected as optimal process conditions for the application of citrate-coated nanosized Ag paste onto bare Cu–Cu joints. The newly developed Cu–Cu joints showed excellent thermal stability at 150 ?°C using the citrate-coated nanosized Ag paste. After long-term aging, the joints exhibited stability at 250 ?°C for 144 ?h, indicating a good high-temperature reliability for three-dimensional integrated circuits (3D ICs) fabricated under atmospheric conditions.  相似文献   
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Summary The rate of hydrolysis of protein-methyl ester, the enzymatic product of S-adenosylmethionine: proteincarboxyl methyltransferase (EC.2.1.1.24) acting on oxidized ribonuclease, was measured at pH 7.1 and 8.6 at 37°C. The half-life of the hydrolysis of the ester is 25 min at pH 7.1, and 4 min at 8.6. The rate of hydrolysis of the enzymatically formed esters at pH 7.0, in 0.1M phosphate buffer, was about 25 times faster than that of esters formed chemically by reaction with methanol in HCl. The lability of the enzymatically synthesized protein-methyl ester suggests that the esterification is specific to sites such that ionization of neighboring amino acid side chains enhances the rate of the hydrolysis.Acknowledgments. This work was supported by Research Grants AM 09603 from the National Institute of Arthritis and Metabolic Diseases, CA 10439 and CA 12226 from the National Cancer Institute, 1-P01-HD-05874 from the National Institute of Child Health and Human Development, National Institutes of Health, GM 20594-03 from National Institute of General Medical Sciences, USA.  相似文献   
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Point process models, such as Hawkes and recursive models, have recently been shown to offer improved accuracy over more traditional compartmental models for the purposes of modeling and forecasting the spread of disease epidemics. To explicitly test the performance of these two models in a real-world and ongoing epidemic, we compared the fit of Hawkes and recursive models to outbreak data on Ebola virus disease (EVD) in the Democratic Republic of the Congo in 2018–2020. The models were estimated, and the forecasts were produced, time-stamped, and stored in real time, so that their prospective value can be assessed and to guard against potential overfitting. The fit of the two models was similar, with both models resulting in much smaller errors in the beginning and waning phases of the epidemic and with slightly smaller error sizes on average for the Hawkes model compared with the recursive model. Our results suggest that both Hawkes and recursive point process models can be used in near real time during the course of an epidemic to help predict future cases and inform management and mitigation strategies.  相似文献   
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Metabolic activity indicative of cellular demand is emerging as a key player in cell fate decision. Numerous studies have demonstrated that diverse metabolic pathways have a critical role in the control of the proliferation, differentiation and quiescence of stem cells. The identification of neural stem/progenitor cells (NSPCs) and the characterization of their development and fate decision process have provided insight into the regenerative potential of the adult brain. As a result, the potential of NSPCs in cell replacement therapies for neurological diseases is rapidly growing. The aim of this review is to discuss the recent findings on the crosstalk among key regulators of NSPC development and the metabolic regulation crucial for the function and cell fate decisions of NSPCs. Fundamental understanding of the metabolic circuits in NSPCs may help to provide novel approaches for reactivating neurogenesis to treat degenerative brain conditions and cognitive decline.  相似文献   
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