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Prediction of DNA binding motifs from 3D models of transcription factors; identifying TLX3 regulated genes

机译:从转录因子3D模型预测DNA结合基序; 识别TLX3受调节基因

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摘要

Proper cell functioning depends on the precise spatio-temporal expression of its genetic material. Gene expression is controlled to a great extent by sequence-specific transcription factors (TFs). Our current knowledge on where and how TFs bind and associate to regulate gene expression is incomplete. A structure-based computational algorithm (TF2DNA) is developed to identify binding specificities of TFs. The method constructs homology models of TFs bound to DNA and assesses the relative binding affinity for all possible DNA sequences using a knowledge-based potential, after optimization in a molecular mechanics force field. TF2DNA predictions were benchmarked against experimentally determined binding motifs. Success rates range from 45% to 81% and primarily depend on the sequence identity of aligned target sequences and template structures, TF2DNA was used to predict 1321 motifs for 1825 putative human TF proteins, facilitating the reconstruction of most of the human gene regulatory network. As an illustration, the predicted DNA binding site for the poorly characterized T-cell leukemia homeobox 3 (TLX3) TF was confirmed with gel shift assay experiments. TLX3 motif searches in human promoter regions identified a group of genes enriched in functions relating to hematopoiesis, tissue morphology, endocrine system and connective tissue development and function.
机译:适当的细胞功能取决于其遗传物质的精确时空表达。基因表达在很大程度上通过序列特异性转录因子(TFS)来控制。我们目前关于TFS结合和关联以调节基因表达的目前的知识是不完整的。开发了一种基于结构的计算算法(TF2DNA)以识别TFS的结合特异性。该方法构建与DNA结合的TFS的同源型模型,并在分子力学力场中优化后,使用知识的电位评估所有可能的DNA序列的相对结合亲和力。 TF2DNA预测是针对实验确定的结合基序的基准测试。成功率范围为45%至81%,主要取决于对齐的目标序列和模板结构的序列同一性,TF2DNA用于预测1825个推定的人TF蛋白的1321个图案,促进大多数人基因调节网络的重建。作为图示,用凝胶移位测定实验证实了用于较差的T细胞白血病Homeobox 3(TLX3)TF的预测的DNA结合位点。人体启动子地区的TLX3主题搜索鉴定了一组富含血液缺陷,组织形态,内分泌系统和结缔组织开发和功能的功能。

著录项

  • 来源
    《Nucleic Acids Research》 |2014年第22期|共13页
  • 作者单位

    Albert Einstein Coll Med Dept Syst &

    Computat Biol Bronx NY 10461 USA;

    Albert Einstein Coll Med Dept Biochem Bronx NY 10461 USA;

    Geisinger Med Clin Mol Neurosci Lab Danville PA 17822 USA;

    Geisinger Med Clin Mol Neurosci Lab Danville PA 17822 USA;

    Albert Einstein Coll Med Dept Syst &

    Computat Biol Bronx NY 10461 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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