A Dynamic Representation of mRNA Nucleotides Clarifies the Conundrum of Codon Redundancy

Daniele Funaro
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Abstract

The deciphering of the genetic code takes place through the reading of the nitrogenous bases, which are four in number. In most cases, the bases are taken three by three, thus generating 64 possible combinations with repetition. Each combination (codon) allows for the synthesis of a specific amino acid. Since the latter are only 21 in number, the codon-amino acid conversion table shows a strong redundancy. Countless efforts have been made to understand the true encryption mechanism. Here, we want to add our version, which consists of associating a periodic sound based on three notes to each codon. RNA now becomes a dynamic object and not just a list of static instructions. In addition to a different interpretation of the genetic code, there is also a considerable reduction in redundancy, given that the number of periodic sounds that can be produced with three notes drops to 20 (with the addition of four pure frequencies). Finally, we discuss the possibility of how these sounds can be generated and travel inside the double helix, and possibly emitted as biophotons.
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mRNA核苷酸的动态表示阐明了密码子冗余的难题
遗传密码的破译是通过读取氮碱基来进行的,氮碱基有四个。在大多数情况下,碱基是3乘3的,因此产生64种可能的重复组合。每个组合(密码子)都允许合成一种特定的氨基酸。由于后者只有21个,因此密码子-氨基酸转换表具有很强的冗余性。为了理解真正的加密机制,人们付出了无数的努力。在这里,我们想要添加我们的版本,它包括基于三个音符将周期性声音关联到每个密码子。RNA现在变成了一个动态对象,而不仅仅是一个静态指令列表。除了对遗传密码的不同解释之外,冗余度也有相当大的减少,因为三个音符可以产生的周期性声音的数量下降到20个(加上四个纯频率)。最后,我们讨论了这些声音如何产生并在双螺旋内传播的可能性,并可能以生物光子的形式发射。
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