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The synthetic antibody model “M41” was rationally designed with a binding site complementary to chicken egg white cystatin as the prescribed antigen. In order to permit comparison between the computer model and an experimental three-dimensional structure of the artificial protein, its X-ray crystallographic analysis was pursued. For this purpose, M41 was expressed as a recombinant Fab fragment in E. coli by medium cell density fermentation employing the tightly regulated tetracycline promoter. The Fab fragment was efficiently purified via a His-6 tail fused to its heavy chain and immobilized metal affinity chromatography. To raise the chances for the productive formation of crystal packing contacts, three versions of the Fab fragment were generated with differing constant domains. One of these, the variant with murine CK and CH 1γ1 domains, was successfully crystallized by microseeding in a sitting drop. The orthorhombic crystals exhibited symmetry of the space group P212121 with unit cell dimensions a = 104.7 Å, b = 113.9 Å, c = 98.8 Å and diffracted X-rays to a nominal resolution of 2.5 Å. © 1995 Wiley-Liss, Inc. 相似文献
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Hints on the evolutionary design of a dimeric RNase with special bioactions. 总被引:2,自引:2,他引:0
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A. Di Donato V. Cafaro I. Romeo G. D'Alessio 《Protein science : a publication of the Protein Society》1995,4(8):1470-1477
Residues P19, L28, C31, and C32 have been implicated (Di Donato A, Cafaro V, D'Alessio G, 1994, J Biol Chem 269:17394-17396; Mazzarella L, Vitagliano L, Zagari A, 1995, Proc Natl Acad Sci USA: forthcoming) with key roles in determining the dimeric structure and the N-terminal domain swapping of seminal RNase. In an attempt to have a clearer understanding of the structural and functional significance of these residues in seminal RNase, a series of mutants of pancreatic RNase A was constructed in which one or more of the four residues were introduced into RNase A. The RNase mutants were examined for: (1) the ability to form dimers; (2) the capacity to exchange their N-terminal domains; (3) resistance to selective cleavage by subtilisin; and (4) antitumor activity. The experiments demonstrated that: (1) the presence of intersubunit disulfides is both necessary and sufficient for engendering a stably dimeric RNase; (2) all four residues play a role in determining the exchange of N-terminal domains; (3) the exchange is the molecular basis for the RNase antitumor action; and (4) this exchange is not a prerequisite in an evolutionary mechanism for the generation of dimeric RNases. 相似文献
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Seligy VL Barbier JR Dimock KD Dove MJ Moranelli F Morosoli R Willick GE Yaguchi M 《Biotechnology advances》1984,2(2):201-216
New gene selection techniques (Recombinant DNA) are currently available to exploit useful properties of various biological systems hitherto regarded as interesting but of little or no immediate commercial value. The application of genetic engineering techniques to problems in the Pulp and Paper Industry are many. As a first step these techniques are being used to provide much needed fundamental information on the cellular and molecular mechanisms involved in the expression of extra-cellular enzymes that degrade lignocellulosic pulping wastes. The information gleaned from the studies on cellulolytic fungi and bacteria can be used to genetically engineer a yeast or bacterium capable of converting pulping wastes into ethanol and other useful by-products. 相似文献
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Leon R. Kass 《In vitro cellular & developmental biology. Plant》1981,17(12):1091-1099
Summary Modern science, dedicated since its 17th Century origins to the mastery and possession of nature for the relief of man's estate,
is a source of great social change, affecting our opinions, practices, and ways of life. It thus exists necessarily in tension
with law and morality, our institutions of stability and order. This tension between change and permanence, between science
and law or morals, was institutionalized by the American Founders who sought to encourage, under law, the progress in science
and the useful arts, by means of the copyright and patent laws. American science and technology have flourished under the
patent law, an ingenious ethical and social contract between scientists and the polity, through which private right and interest
and public good generally coincide. Nevertheless, this contract has its limitations. Some of these limitations are vividly
seen through the recent Supreme Court decision (in the Chakrabarty case) to permit the patenting of living microorganisms.
Analysis of this case shows why the contract between science and the polity embodied in the Patent Laws may not always serve
the public good and may also be harmful to science itself. Also, permitting ownership of living species shows how close we
have come in our thinking to overstepping the sensible limits of the project for the mastery and possession of nature. 相似文献
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褐藻寡糖(alginate oligosaccharides,AOS)是褐藻胶的降解产物,具有抗氧化、调节免疫、调节血脂、促进细胞生长等生理活性,应用范围广泛。现有的AOS 制备法主要分为物理法、化学法和生物法。介绍AOS的生物法制备包括酶解、微生物全细胞发酵和生物合成法,基因工程的应用在改造产褐藻胶裂解酶的菌株以提高生物法效率方面具有重要意义。此外,规模化的AOS生物法制备案例进行了科学引证,并展望了未来 AOS规模化制备的发展方向,以期为 AOS 的工业化制备和应用提供参考。 相似文献