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1)  transcription factor binding motif
转录因子结合模体
2)  Transcription factor GATA binding protein-3
转录因子GATA结合蛋白3
3)  transcription factor binding site
转录因子结合位点
1.
Predicting human tumor-specific promoter using transcription factor binding sites;
利用转录因子结合位点识别人类肿瘤特异性启动子研究
2.
Recent progress has shown that the distribution of transcription factor binding sites in the promoter region affects eukaryotic gene expression.
为了寻找启动子区域上转录因子结合位点的分布规律,进而研究这种规律与真核基因表达调控机制之间的关系,该文从已有数据出发,运用位置权重矩阵(PWM)扫描算法对启动子区域上4种与肝脏特异表达相关的转录因子结合位点分布情况进行了初步研究,并提出了一种新的序列评分方法。
3.
Identification of transcription factor binding sites is an important step towards the understanding of the transcription regulation.
转录因子结合位点的识别是阐明基因转录调控机制的重要环节,准确的转录因子结合位点的预测算法将有助于人们识别转录因子的目标基因,进而研究转录因子结合位点在上游调控区中的位置对转录调控的影响。
4)  Transcription factor binding sites
转录因子结合位点
1.
Based on the nucleotide frequency in each position of transcription factor binding sites(TFBS),the site conservation indexes M_i and a novel position weight matrix(PWM) are calculated and presented for predicting yeast TFBSs.
基于在转录因子结合位点各碱基出现的概率不相同,以转录因子结合位点每一位置的碱基保守程度为参量,分别计算每种转录因子结合位点在每一位置的碱基保守指数Mi。
2.
Based on the known transcription factor binding sitesand promoter sequences, a new position weight matrices scoring algorithm(PWMSA) for predicting transcription factor binding sites is presented.
基因转录调控一直是生物信息学研究的一个重要内容,转录因子结合位点和启动子的识别是研究基因转录调控的重要环节,是构建基因调控网络的一个核心问题。
3.
Methods:By extraction of genomic DNA,the human HPSE gene promoter was amplified and identified by T-A cloning,restriction endonuclease and sequencing for determining the transcription factor binding sites in the amplified sequence.
方法:提取人类基因组DNA,PCR扩增HPSE基因启动子,T-A克隆、酶切鉴定,然后进行测序比对,分析其中转录因子结合位点。
5)  transcription factor binding sites (TFBS)
转录因子结合位点
1.
This paper models transcription factor binding sites (TFBS) using two-step Z transform.
本文采用二阶Z变换对转录因子结合位点序列进行建模。
6)  mtTF1 mRNA
线粒体转录因子
1.
Effects of panaxydol on the migration and expression of mtTF1 mRNA in VSMCs;
人参环氧炔醇对VSMCs迁移和线粒体转录因子1mRAN表达的影响
2.
Objective:To study the effects of panaxydol (PND) on the migration and expression of mtTF1 mRNA in rat aortic smooth muscle cells (RASMCs) induced by 10% FBS were investigated.
目的:观察人参环氧炔醇(panaxydol,PND)对10%胎牛血清(FBS)诱导的大鼠主动脉平滑肌细胞(RASMCs)迁移和线粒体转录因子1 mRAN 表达的影响。
补充资料:染色体结合复合体
分子式:
CAS号:

性质:一种细胞器,出现于减数分裂过程中,染色体同源区域间居间的密切的成双配对。

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