BNT162b2疫苗:可能的密码子误读,蛋白质合成错误和选择性剪接异常

Kira Smith
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引用次数: 1

摘要

针对Covid-19的BNT162b2疫苗由具有4284个核苷酸的RNA组成,分为6个部分,这些RNA将信息用于创建S刺突蛋白工厂,S刺突蛋白是Sars-CoV-2 (Covid-19)用来感染宿主的蛋白质。之后,这些蛋白质被引导到细胞外,引发免疫反应和抗体的产生。问题是mrna的严重改变:用Ψ(伪尿嘧啶)代替尿嘧啶来欺骗免疫系统;全密码子三联体的字母被替换为C或G,极大地提高了蛋白质合成的速度;用脯氨酸代替一些氨基酸;添加一个未知改变的序列(3 ' -UTR)。这些损伤可能引起对密码子使用错误存在的强烈怀疑。最终的误译会对多种疾病的病理生理产生影响。此外,注射的mRNA是一个pre-mRNA,它可以导致多个成熟mRNA;这些另类剪接异常,直接来源严重长期危害人类健康。从本质上讲,将产生的东西可能与蛋白质S Spike不同:只是翻译解码中的一个错误,密码子误读,不同氨基酸的产生,然后是蛋白质,对人类健康造成严重的长期损害,尽管DNA没有被修饰,而是在细胞核中,而不是在细胞质中,修饰的mrna到达细胞质。然而,在这种情况下,合成速度和蛋白质表达与合成错误之间的关系,以及可能影响序列翻译的机制仍然不清楚,许多试验尚未进行。
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BNT162b2 Vaccine: possible codons misreading, errors in protein synthesis and alternative splicing's anomalies
BNT162b2 vaccine against Covid-19 is composed of an RNA having 4284 nucleotides, divided into 6 sections, which bring the information to create a factory of S Spike proteins, the ones used by Sars-CoV-2 (Covid-19) to infect the host. After that, these proteins are directed outside the cell, triggering the immune reaction and antibody production. The problem is the heavy alteration of the mRNA: Uracil is replaced to fool the immune system with Ψ (Pseudouridine); the letters of all codon triplets are replaced by a C or a G, to extremely increase the speed of protein synthesis; replacement of some amino acids with Proline; addition of a sequence (3’-UTR) with unknown alteration. These impairments could cause strong doubts about the presence of codon usage errors. An eventual mistranslation has consequences on the pathophysiology of a variety of diseases.In addition, mRNA injected is a pre-mRNA, which can lead to the multiple mature mRNAs; these are alternative splicing anomalies, direct source of serious long-term harm on the human health. In essence, what will be created may not be identical with protein S Spike: just an error in translational decoding, codons misreading, production of different amino acids, then proteins, to cause serious long-term damage to human health, despite the DNA is not modified, being instead in the cell nucleus and not in the cytoplasm, where the modified mRNA arrives. However, in this case, the correlation between speed of synthesis and protein expression with synthesis errors, as well as the mechanism that could affect the translation of the sequence remain obscure, many trials have not yet been performed.
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