【2h】

Origin and Evolution of the Ribosome

机译:核糖体的起源与进化

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摘要

The modern ribosome was largely formed at the time of the last common ancestor, LUCA. Hence its earliest origins likely lie in the RNA world. Central to its development were RNAs that spawned the modern tRNAs and a symmetrical region deep within the large ribosomal RNA, (rRNA), where the peptidyl transferase reaction occurs. To understand pre-LUCA developments, it is argued that events that are coupled in time are especially useful if one can infer a likely order in which they occurred. Using such timing events, the relative age of various proteins and individual regions within the large rRNA are inferred. An examination of the properties of modern ribosomes strongly suggests that the initial peptides made by the primitive ribosomes were likely enriched for l-amino acids, but did not completely exclude d-amino acids. This has implications for the nature of peptides made by the first ribosomes. From the perspective of ribosome origins, the immediate question regarding coding is when did it arise rather than how did the assignments evolve. The modern ribosome is very dynamic with tRNAs moving in and out and the mRNA moving relative to the ribosome. These movements may have become possible as a result of the addition of a template to hold the tRNAs. That template would subsequently become the mRNA, thereby allowing the evolution of the code and making an RNA genome useful. Finally, a highly speculative timeline of major events in ribosome history is presented and possible future directions discussed.
机译:现代核糖体主要是在上一个共同祖先LUCA时代形成的。因此,其最早的起源可能在于RNA世界。其发展的核心是产生现代tRNA的RNA,以及在大核糖体RNA(rRNA)内深处的一个对称区域,在该区域发生肽基转移酶反应。为了理解LUCA之前的发展,有人认为,如果可以推断事件发生的可能顺序,那么时间相关的事件特别有用。使用此类计时事件,可以推断出大型rRNA中各种蛋白质和各个区域的相对年龄。对现代核糖体性质的检查强烈表明,原始核糖体制备的初始肽可能富含L-氨基酸,但并未完全排除D-氨基酸。这对由第一核糖体制备的肽的性质具有影响。从核糖体起源的角度来看,与编码有关的直接问题是它是何时产生的,而不是分配如何演变的。现代核糖体非常活跃,tRNA可以进出,mRNA相对于核糖体也可以移动。这些运动可能由于添加了模板来保存tRNA而成为可能。该模板随后将成为mRNA,从而允许密码的进化并使RNA基因组有用。最后,提出了核糖体历史上重大事件的高度推测性的时间表,并讨论了可能的未来方向。

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