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首页> 外文期刊>BioMed research international >Gene Entropy-Fractal Dimension Informatics with Application to Mouse-Human Translational Medicine
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Gene Entropy-Fractal Dimension Informatics with Application to Mouse-Human Translational Medicine

机译:基因熵 - 分形尺寸信息学应用于小鼠 - 人类翻译医学

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摘要

DNA informatics represented by Shannon entropy and fractal dimension have been used to form 2D maps of related genes in various mammals. The distance between points on these maps for corresponding mRNA sequences in different species is used to study evolution. By quantifying the similarity of genes between species, this distance might be indicated when studies on one species (mouse) would tend to be valid in the other (human). The hypothesis that a small distance from mouse to human could facilitate mouse to human translational medicine success is supported by the studied ESR-1, LMNA, Myc, and RNF4 sequences. ID1 and PLCZ1 have larger separation. The collinearity of displacement vectors is further analyzed with a regression model, and the ID1 result suggests a mouse-chimp-human translational medicine approach. Further inference was found in the tumor suppression gene, p53, with a new hypothesis of including the bovine PKM2 pathways for targeting the glycolysis preference in many types of cancerous cells, consistent with quantum metabolism models. The distance between mRNA and protein coding CDS is proposed as a measure of the pressure associated with noncoding processes. The Y-chromosome DYS14 in fetal micro chimerism that could offer protection from Alzheimer's disease is given as an example.
机译:由香农熵和分形维数代表的DNA信息学已被用于在各种哺乳动物中形成相关基因的2D地图。用于不同物种的相应mRNA序列的这些地图上的点之间的距离用于研究进化。通过量化物种之间基因的相似性,当对一个物种(小鼠)的研究往往(人)有效时,可以表明该距离。从小鼠对人类到人类的假设可以促进小鼠对人类翻译药物的成功由研究的ESR-1,LMNA,Myc和RNF4序列支持。 ID1和PLCZ1分离较大。用回归模型进一步分析位移载体的共同性,ID1结果表明了鼠标 - 黑猩猩 - 人类翻译医学方法。在肿瘤抑制基因P53中发现了进一步推断,具有新的假设,包括牛PKM2途径,用于靶向许多类型的癌细胞中的糖醇分解偏好,与量子代谢模型一致。提出mRNA和蛋白质编码CDS之间的距离作为与非编码过程相关的压力的量度。胎儿微嵌合中的Y-染色体DYS14,可以提供从阿尔茨海默病的保护的含义。

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