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Evidence for DNA resonance signaling via longitudinal hydrogen bonds.
Progress in Biophysics and Molecular Biology ( IF 3.2 ) Pub Date : 2020-07-23 , DOI: 10.1016/j.pbiomolbio.2020.07.005
Ivan Savelev 1 , Max Myakishev-Rempel 2
Affiliation  

The theory of the morphogenic field suggests that chemical signaling is supplemented by electromagnetic signaling governing the structure and shape of tissues, organs and the body. The theory of DNA resonance suggests that the morphogenic field is created by the genomic DNA which sends and receives electromagnetic signals in a sequence-specific manner. Previously, the authors have proposed the existence of HIDERs, genomic elements that serve as antennas in resonance signaling and demonstrated that they occur nonrandomly and are conserved in evolution. Here, it is proposed that longitudinal hydrogen bonds exist in the double helix, that chains of these bonds form delocalized proton clouds, that the shapes of these clouds are sequence-specific and form the basis of sequence-specificity of resonance between HIDERs. Based on longitudinal hydrogen bonds, a proton DNA resonance code was devised and used to identify HIDERs which are enriched 20 fold in the genome and conserved in evolution. It was suggested that these HIDERs are the key elements responsible for DNA resonance signaling and the formation of the morphogenic field.



中文翻译:

通过纵向氢键进行DNA共振信号传递的证据。

形态发生场的理论表明,化学信号可以通过控制组织,器官和身体的结构和形状的电磁信号来补充。DNA共振理论表明,形态发生场是由基因组DNA创建的,该基因组DNA以序列特定的方式发送和接收电磁信号。以前,作者提出了HIDERs的存在,它们是共振信号中的天线,并证明它们是非随机发生的,并且在进化中是保守的。在此,提出在双螺旋中存在纵向氢键,这些键的链形成离域的质子云,这些云的形状是序列特异性的,并且形成了HIDER之间共振的序列特异性的基础。基于纵向氢键,设计了质子DNA共振密码,并用于鉴定在基因组中富集20倍并在进化中保守的HIDER。有人提出,这些HIDERs是负责DNA共振信号传导和形成形态发生场的关键元件。

更新日期:2020-09-24
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