蛋白质合成中组合工具的研究进展

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引用次数: 0

摘要

问题陈述:要研究的蛋白质合成中的组合工具是多种多样的,包括现象、过程、活动和材料,所有这些都具有多样性和差异性的特征。可用的材料是现象性的,必须是一组离散的复数和不同的物体,例如RNA的四个碱基腺嘌呤,尿嘧啶,鸟嘌呤,胞嘧啶(a,U,G,C),用于构建遗传密码的排列活性。序列的蛋白质类型、序列组成、增殖和多样化是蛋白质合成所固有的。方法和理论方向:我们致力于组合学,这是一门研究投入/产出生产力现象的科学,它是由不同离散复数的特定集合(n)的排列所显示的数字实体的对偶性。事物和它们的选择。作者正在开发的输入/输出乘法复制系统的Dalina装置配备了方形运动学视图混合技术,该技术来源于早期的计算科学文献,用于从RNA的4个排列中计算4个碱基,A,U,G,C构成24个四联体遗传密码,作为蛋白质合成的劳动力。结果:鉴定和调查的蛋白质合成组合用具包括14个特征,3种材料和11个过程/操作。结论及意义:通过测试输入/输出乘法复制组合系统的Dalina装置的一致性,证明了几种鉴定和调查的组合工具在蛋白质合成中的相关性,该装置使用方形运动学视图混合技术计算RNA四碱基A,U,G,C的排列,构成24个四联体遗传密码,作为所有植物和动物物质蛋白质合成的劳动力在创造。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Survey of the Combinatorial Paraphernalia in Protein Synthesis
Statement of the Problem: The combinatorial paraphernalia in protein synthesis to be surveyed are multifarious, embracing, phenomena, processes, activities and materials, all characterized by plurality and dissimilarity. The materials usable are phenomenal and must be a set of discrete plural and dissimilar objects, e.g. the RNA four bases of Adenine, Uracil, Guanine, Cytosine (A,U,G,C) for the activity of permutation for building genetic code. Sequences for protein type sequence composition, proliferation and diversification as inherent in protein synthesis. Methodology and Theoretical Orientation: We are in for combinatorics which is the scientific study of the phenomenon of input/output productivity exhibited by a duality of numeral entities as in permutation of specified set (n) of dissimilar discrete plural. Things and selection (r) of them. The Dalina apparatus of Input/Output Multiplicative Replication system equipped with Square Kinematics View Mixing Technique sourced from inchoate Numeration Science literature being developed by this author is in use for the computation of 4 from 4 permutations of RNA four bases, A,U,G,C constituting the 24 quadruplet genetic code as the workforce in protein synthesis. Findings: The combinatorial paraphernalia in protein synthesis identified and surveyed comprise 14 characteristics, 3 materials and 11 processes/operatives. Conclusion and Significance: The relevance of the several identified and surveyed combinatorial paraphernalia in protein synthesis has been demonstrated by the test of agreeability with the working of the Dalina apparatus of Input/ Output Multiplicative Replication Combinatorial System using the Square Kinematics View Mixing technique for the computation of permutations of RNA four bases A,U,G,C making up the 24 quadruplet genetic code as the workforce in protein synthesis for the substance of all plants and animals throughout CREATION.
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