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Titlebook: Information and Communications Security; 18th International C Kwok-Yan Lam,Chi-Hung Chi,Sihan Qing Conference proceedings 2016 Springer Int

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The Security of Individual Bit for XTRWe consider bit security of public key cryptosystem XTR, presented by Lenstra and Verheul in 2000. Using the list-decoding method, we prove finding one of its pre-image of XTR if single bit of its plaintext is predicted with a non-negligible advantage. That is, every single bit of plaintext of XTR is a hardcore predicate if XTR is one-way.
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tes include both xenobiotics (drugs, carcinogens, environmental pollutants, and other chemicals) and endogenous metabolites (steroids, fatty acids, prostaglandins, etc.). As shown in Fig. 1, the major sites of cytochrome P450 action in mammalian metabolism are reactions connected to sterol metabolis
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lete and right up-to-date coverage of this important enzyme system. The authors describe and analyze the components of the enzyme system, the reaction mechanisms involved, and the evolution and nomenclature of this superfamily of enzymes. They also describe the hepatic microsomal enzyme in a large n
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Johannes Bauer,Ralf C. Staudemeyer,Henrich C. Pöhls,Alexandros Fragkiadakisde for the similarity of different substrates the number of reactions is still considerable (Fig. 1). However, these can be considered in terms of a few groups of oxidative reactions that proceed through similar chemistry. Most of the oxidative reactions have been demonstrated with biomimetic chemic
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Kwok-Yan Lam,Chi-Hung Chin of CYP genes. The ability of xenobiotics to bind and activate NRs to induce the expression of the CYP enzymes involved in their metabolism provides a mechanism by which an organism can mount an adaptive response to its changing chemical environment. The identification of endogenous ligands for som
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Yaowen Zheng,Kai Cheng,Zhi Li,Shiran Pan,Hongsong Zhu,Limin Sun Are we near to a detailed molecular understanding? We have attempted to convey in this chapter of . the recent discoveries that fill many of the lacunas in our understanding of P450-catalyzed substrate oxidations. We now have a precise three-dimensional structure of the ferrous-oxygenated state, an
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Are we near to a detailed molecular understanding? We have attempted to convey in this chapter of . the recent discoveries that fill many of the lacunas in our understanding of P450-catalyzed substrate oxidations. We now have a precise three-dimensional structure of the ferrous-oxygenated state, an
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