看看所有进入蛋白质折叠【译注】的数据。
比如蛋白质折叠的方式,加上其它部分的能量。
The different ways that you can fold the protein, Plus everything else. The energy of everything else.
蛋白质折叠是一个复杂的演化过程。
但是弄清蛋白质折叠的规则一直是生物学的核心问题之一。
But understanding the rules of protein folding remains one of biology's central problems.
科学家们还无法重现这种复杂的蛋白质折叠技巧。
Scientists have not been able to replicate that intricate folding.
研究肽链长度对蛋白质折叠和结合速度的影响。
We study the rate of protein folding and binding at different temperature, different folding energy and different length of protein.
项目目标:了解蛋白质折叠、误折以及相关的疾病。
Our goal: to understand protein folding, misfolding, and related diseases.
蛋白质折叠和去折叠机制是蛋白质研究的重要领域。
The mechanisms of protein folding and unfolding, is the important field of protein research.
科学家试图理解蛋白质折叠的一种方式是通过在计算机上进行模拟。
One way scientists try to understand protein folding is by simulating it on computers.
HP格点模型是研究蛋白质折叠的一种重要的简化模型。
The HP Lattice model is an important simplified model in research protein folding.
介绍了计算机模拟蛋白质折叠问题的背景、模型和意义。
We mainly introduce the background, model and importance of computer simulation for protein folding.
在本文中,我们将展示与蛋白质折叠相关的某个项目的研究进展情况。
In this article, we present some of the progress that has been made by one of the projects having to do with protein modeling.
为一个给定的折叠列举允许的序列被称为逆蛋白质折叠问题。
Enumerating the allowed sequences for a given fold is known as the 'inverse protein folding problem'.
其它项目也随之而来,从寻找最大的素数到蛋白质折叠分析。
Other projects soon followed, focused on everything from the search for large prime Numbers to protein folding.
这是因为模拟蛋白质折叠时所进行的计算,其类型能被图形处理器很好的适应。
That is because GPUs are well suited to the types of calculations involved when simulating protein folding.
新生肽链折叠的研究是解决目前蛋白质折叠研究中所遇到问题的关键。
The research of the nascent peptide folding is the key to resolve the problems of the protein folding.
研究了细胞内存在的分子伴侣、蛋白质聚集和大分子拥挤环境对蛋白质折叠的影响。
The effects of molecular chaperones, protein aggregation and macromolecular crowding on protein folding have been studied.
近十几年来集中在蛋白质折叠研究,在国内开辟了分子伴侣和折叠酶研究的新方向。
Over the last decade focused on the study of protein folding, opened up a new direction for molecular chaperone and folding enzymes in China.
蛋白质折叠和蛋白质设计的研究是当代分子生物学的热点问题,具有重要的科学意义。
Protein folding and protein design has become one of the most actively studied problems in modern molecular biology.
不正确的折叠会导致很多疾病,例如alzheimer病;因此,对于蛋白质折叠的研究非常重要。
Incorrect folding is believed to lead to a variety of diseases like Alzheimer's; therefore, the study of protein folding is of fundamental importance.
学习蛋白质折叠式了解一些神经性能疾病的关键,而这些疾病则是由于某些蛋白质的折叠错误而产生的。
Studying protein folding is key to understanding several neurodegenerative diseases that are a result of the incorrect folding of certain protein strings.
我们力图为大量已知蛋白质折叠解决这个问题(一个有代表性的子集:大约1500个折叠)。
We are working to solve this problem for a large number of known protein folds (a representative subset: about 1500 folds).
结果表明,用含主链重原子的方式定义接触,所计算的拓扑参数与蛋白质折叠速度的相关性较好;
The result is that the pertinences between the topological parameters with contact definition having relation to main-chain atoms and the folding rates are better than others;
由于蛋白质折叠机制的复杂性,直到现在,在蛋白质折叠普遍性质的研究中简化模型仍被广泛地使用。
Due to the complexity of protein folding mechanism, simplified models are widely used to study the essential and general properties of protein folding up to date.
蛋白质的氨基酸序列。称之为‘结构’的原因也许是因为这样的序列常常足以决定该蛋白质折叠出的结构。
Amino acid sequence of a protein. Perhaps termed a 'structure' because the sequence is often enough to determine the folded structure of the protein.
玩家们用光标沿着链长方向在任意位置上抓取、弯曲、拉伸和摆动氨基酸链,把蛋白质折叠成最合适的形状。
Players use the cursor to grab, bend, pull, and wiggle the chain of amino acids anywhere along its length, folding the protein into its optimum shape.
钙是一种通用的信号传导分子,参与许多细胞功能,如细胞运动、代谢、蛋白质修饰、蛋白质折叠和细胞凋亡。
Calcium is a universal signaling molecule involved in many cellular functions such as cell motility, metabolism, protein modification, protein folding, and apoptosis.
钙是一种通用的信号传导分子,参与许多细胞功能,如细胞运动、代谢、蛋白质修饰、蛋白质折叠和细胞凋亡。
Calcium is a universal signaling molecule involved in many cellular functions such as cell motility, metabolism, protein modification, protein folding, and apoptosis.
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