Prebiotic RNA self-assembling and the origin of life: Mechanistic and molecular modeling rationale for explaining the prebiotic origin and replication of RNA.

IF 2.3 4区 生物学 Q4 CELL BIOLOGY Acta histochemica Pub Date : 2025-01-08 DOI:10.1016/j.acthis.2024.152226
Juan C Stockert, Richard W Horobin
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Abstract

In recent years, a great interest has been focused on the prebiotic origin of nucleic acids and life on Earth. An attractive idea is that life was initially based on an autocatalytic and autoreplicative RNA (the RNA-world). RNA duplexes are right-handed helical chains with antiparallel orientation, but the rationale for these features is not yet known. An antiparallel (inverted) stacking of purine nucleosides was reported in crystallographic studies. Molecular modeling also supports the inverted orientation of nucleosides. This preferential stacking can also appear when nucleosides are included in a montmorillonite clay matrix. Free-energy values and geometrical parameters show that D-ribose chirality is preferred for the formation of right-handed RNA molecules. Thus, a "zipper" model with antiparallel and auto-intercalated nucleosides linked by phosphate groups can be proposed to form single RNA chains. Unstacking with strand separation and base pairing by H-bonding, results in shortening and inclination of ribose-phosphate chains, leading to right-handed helicity and antiparallel duplexes. Incorporation of complementary precursors on the major groove template by a self-assembly mechanism provides a prebiotic (non-enzymatic) "tetris" replication model by formation of a transient RNA tetrad and tetraplex. Original hairpin motifs appear as simple building units that form typical RNA structures such as hammerheads, cloverleaves and dumbbells. They occur today in the circular viroids and virusoids, as well as in highly branched and complex rRNA molecules.

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益生元RNA自组装和生命起源:解释RNA起源和复制的机制和分子模型原理。
近年来,人们对核酸的起源和地球上的生命产生了极大的兴趣。一个有吸引力的观点是,生命最初是基于一种自我催化和自我复制的RNA (RNA世界)。RNA双链是具有反平行取向的右旋螺旋链,但这些特征的基本原理尚不清楚。在晶体学研究中报道了嘌呤核苷的反平行(倒置)堆叠。分子模型也支持核苷的倒取向。当核苷被包含在蒙脱土基质中时,这种优先堆积也会出现。自由能值和几何参数表明,d -核糖手性是形成右手性RNA分子的首选。因此,可以提出一种由磷酸基团连接的反平行和自动嵌入核苷的“拉链”模型来形成单链RNA。通过链分离和氢键碱基配对来解除堆叠,导致核糖-磷酸链的缩短和倾斜,从而产生右旋螺旋和反平行双链。通过自组装机制将互补前体结合到主凹槽模板上,提供了一种益生元(非酶)。“俄罗斯方块”复制模型通过形成一个瞬态RNA四体和四体。最初的发夹基序是简单的构建单元,形成了典型的RNA结构,如锤头、三叶草和哑铃。它们今天出现在环状类病毒和类病毒中,以及高度分支和复杂的rRNA分子中。
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来源期刊
Acta histochemica
Acta histochemica 生物-细胞生物学
CiteScore
4.60
自引率
4.00%
发文量
107
审稿时长
23 days
期刊介绍: Acta histochemica, a journal of structural biochemistry of cells and tissues, publishes original research articles, short communications, reviews, letters to the editor, meeting reports and abstracts of meetings. The aim of the journal is to provide a forum for the cytochemical and histochemical research community in the life sciences, including cell biology, biotechnology, neurobiology, immunobiology, pathology, pharmacology, botany, zoology and environmental and toxicological research. The journal focuses on new developments in cytochemistry and histochemistry and their applications. Manuscripts reporting on studies of living cells and tissues are particularly welcome. Understanding the complexity of cells and tissues, i.e. their biocomplexity and biodiversity, is a major goal of the journal and reports on this topic are especially encouraged. Original research articles, short communications and reviews that report on new developments in cytochemistry and histochemistry are welcomed, especially when molecular biology is combined with the use of advanced microscopical techniques including image analysis and cytometry. Letters to the editor should comment or interpret previously published articles in the journal to trigger scientific discussions. Meeting reports are considered to be very important publications in the journal because they are excellent opportunities to present state-of-the-art overviews of fields in research where the developments are fast and hard to follow. Authors of meeting reports should consult the editors before writing a report. The editorial policy of the editors and the editorial board is rapid publication. Once a manuscript is received by one of the editors, an editorial decision about acceptance, revision or rejection will be taken within a month. It is the aim of the publishers to have a manuscript published within three months after the manuscript has been accepted
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