论文标题

核酸,类固醇复合物的分子间酶编码:基于结构对称性的证据,关于生命的化学起源的新理论

Intermolecular Enzymatic Encoding of Nucleic Acid, Steroid Complexes: A New Theory on the Chemical Origin of Life Based on Evidence of Structural Symmetry

论文作者

Schaper, Charles D.

论文摘要

生命的起源是最大的奥秘之一。 DNA合成的机制是生命的化学起源的代名词,并且理论已经沿着许多推理发展,但是解决所有需求仍然是一个挑战,例如定义一个客观的路径,以产生与腺嘌呤与胸腺胺和鸟嘌呤相对的编码核苷酸序列。在这里,提出了有关DNA起源的新理论。该理论基于DNA核苷酸和类固醇激素之间结构对称性的三条实验证据和一致性,并引入了一个新的概念,该概念是在单个统一的统一统一复合物中同时合成DNA的结构和功能特征,该复合物的单个统一复合物形成了构成co-Enbloke blocks-Enbloksys-Enbocky-Enbockys-Enbocky-Enbockys-Ensyzym intersys-Ensyzym intersys-Ensymsys intersy blocksymenzys intersy blocksys intersy blocksys。新理论表明,建立DNA核苷酸代码是第一个合成步骤之一。此外,由于统一复合物中结构和功能特征的分子间合成,因此有一个最终的过程步骤,该过程步骤阐明了DNA中的DNA和类固醇结构,随后触发了复制和转录,以及蛋白质翻译,从而导致生命函数的瞬时释放。

The origin of life is one of the greatest mysteries. The mechanism for the synthesis of DNA is synonymous with the chemical origin of life, and theories have been developed along many lines of reasoning, but resolving all requirements remains a challenge, such as defining an objective path to produce sequences of encoded nucleotides paired as adenine to thymine and guanine to cytosine. Here, a new theory for the origin of DNA is presented. The theory is based upon three lines of experimental evidence and agreement of structural symmetry between DNA nucleotides and steroid hormones, and introduces a new concept of synthesizing both structural and functional characteristics of DNA at the same time within a single unified complex of interleaved tetra-ringed structures, steroid molecules which form reaction vessels that serve as co-enzymatic building blocks. The new theory indicates that the establishment of the DNA nucleotide code is among the very first synthesis steps. Moreover, as a consequence of the intermolecular synthesis of both structural and functional characteristics within a unified complex, there is a culminating process step that sets forth in motion both DNA and the steroid structures that subsequently trigger replication and transcription, as well as protein translation, thereby resulting in the instantaneous release of life function.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源