• Nonsense-mediated decay checks for the presence of premature nonsense codons.

    无意义介导衰变检查是否存在过早无意义密码子。

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  • This gene consists of 337 codons.

    基因337个密码子组成

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  • Codons that mark the end of translation.

    标明转译结束位置密码子。

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  • Of the KRAS mutations detected, 17% were outside of codons 12 and 13.

    KRAS基因突变中,我们检测到17%位于1213号密码子以外的。

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  • The most frequently used codons were NNA and the most infrequently were NNG.

    使用频率最高密码子为NNA,使用频率最低的密码子为nng。

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  • The variations of nucleotide mainly occurred the replace of synonymous codons.

    核苷酸序列变化主要表现在同义密码置换

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  • There are 64 possible codons, 61 of which specify the 20 amino acids that make up proteins.

    可能组合成64种密码子,其中61种指明组成蛋白质的氨基酸

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  • Sequence analysis revealed sequence differences of 1-3 nucleotides involving three separate codons.

    核苷酸顺序分析表明存在1—3个核苷酸取代。

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  • The letters are grouped into three-letter "words" known as codons, meaning that there are 64 of them.

    每3个这样字母形成一个称为密码子的“单词”,这意味着共有64个密码子。

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  • Conclusion: No correlation was found between glucocorticoid receptor gene in exon 2/1 codons 23 and asthma.

    结论:江西籍汉族人种糖皮质激素受体基因子2/1密码23基因未发现多态性的存在。

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  • But if their new bacterium is at least viable, it will have 43 codons that can be re-assigned to other tasks.

    不过只要他们的新品细菌可以存活这个细菌额外的43个基码可以分配去做其他任务。

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  • The genetic information contained in DNA consists of a linear sequence of successive coding units, known AS codons.

    DNA中的遗传信息是由连续编码单位密码子的线形序列构成的。

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  • The results show that some codons' usage in synonymous codon repeat sequences is different from the codon usage in all coding sequences;

    结果表明一部分密码同义密码重复序列中的使用与其在编码序列中明显不同

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  • The compositions associated with stop codons are constrained, it is one of factors that affects the base distribution in protein-coding genes.

    表明终止密码子不同层次上限制基因组分的使用,影响基因碱基分布因素之一。

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  • Sequence analysis showed that its nucleotide sequence had high identity to a Japanese isolate of RDV and contained high percent of rare codons.

    序列分析表明基因日本株具有高度同源并且含有较高比例稀有密码子。

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  • Dr Wang has managed to reassign one of the stop codons in E. coli, the bacterial workhorse of geneticists, to recognise an unnatural amino acid.

    博士已经成功大肠杆菌(遗传学常用工作菌种)中的密码子重新分配去编码一个非自然氨基酸。

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  • Among the polymorphic sites, the nucleotide substitutions in the first and second positions of the codons accounted for 36.76% and 35.29%, respectively.

    这些多态性变异位点中,出现遗传密码第一第二碱基替换率分别36.76%和35.29%。

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  • The numerical results for a group of roughly estimated parameters show that the proposed model may be able to explain the nonrandom usage of synonymous codons.

    粗略估计参数进行数值计算结果表明本文提出模型较好解释同义密码非均匀使用问题。

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  • In the genetic code that life has used up to now, there are 64 possible triplet combinations of the four nucleotide letters; these genetic "words" are called codons.

    生命开始使用遗传密码现在核苷酸四个字母三重组合64个可能这些遗传字词称为密码子。

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  • All but three of the codons correspond to particular amino acids, and the order of the codons in the nucleic acid corresponds to the order of the amino acids in the protein.

    所有三个基码同特定氨基酸相吻合基码核酸中的顺序,同氨基酸在蛋白质中的顺序一致。

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  • The relative usage degree of the synonymous codon is computed and the use of preferences of the synonymous codon in 78 human genes (19967 codons) is analysed based on the quasi-amino acids coding.

    计算基于氨基酸编码方法下同义密码相对使用分析了78个人类基因(19967个密码子)中基于拟氨基酸编码方法下的同义密码子的偏好使用情况。

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  • The relative usage degree of the synonymous codon is computed and the use of preferences of the synonymous codon in 78 human genes (19967 codons) is analysed based on the quasi-amino acids coding.

    计算基于氨基酸编码方法下同义密码相对使用分析了78个人类基因(19967个密码子)中基于拟氨基酸编码方法下的同义密码子的偏好使用情况。

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