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Structure and Function of Moncanonical Nucleobases

机译:单克隆核糖核酸酶的结构和功能

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摘要

DNA and RNA contain, next to the four canonical nucleobases, a number of modified nucleosides that extend their chemical information content. RNA is particularly rich in modifications, which is obviously an adaptation to their highly complex and variable functions. In fact, the modified nucleosides and their chemical structures establish a second layer of information which is of central importance to the function of the RNA molecules. Also the chemical diversity of DNA is greater than originally thought. Next to the four canonical bases, the DNA of higher organisms contains a total of four epigenetic bases: m~5dC, hm~5dC, f~5dC und ca~5dC. While all cells of an organism contain the same genetic material, their vastly different function and properties inside complex higher organisms require the controlled silencing and activation of cell-type specific genes. The regulation of the underlying silencing and activation process requires an additional layer of epigenetic information, which is clearly linked to increased chemical diversity. This diversity is provided by the modified non-canonical nucleosides in both DNA and RNA.
机译:除了四个典型的核碱基外,DNA和RNA还包含许多修饰的核苷,可扩展其化学信息含量。 RNA特别富含修饰,显然是对其高度复杂和可变功能的一种适应。实际上,修饰的核苷及其化学结构建立了第二层信息,这对RNA分子的功能至关重要。而且,DNA的化学多样性比最初的想法还大。在四个标准碱基之后,高等生物的DNA总共包含四个表观遗传碱基:m〜5dC,hm〜5dC,f〜5dC和ca〜5dC。虽然生物体的所有细胞都包含相同的遗传物质,但是它们在复杂的高级生物体中的功能和特性却截然不同,因此需要对细胞类型的特定基因进行沉默和激活控制。对基础沉默和激活过程的调节需要附加一层表观遗传信息,这显然与增加的化学多样性有关。这种多样性是由DNA和RNA中修饰的非规范核苷提供的。

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