Cruz-Rosas Hugo I, Riquelme Francisco, Ramírez-Padrón Alejandra, Buhse Thomas, Cocho Germinal, Miramontes Pedro
Facultad de Ciencias, Universidad Nacional Autónoma de México, Cd. Mx., Mexico.
Laboratorio de Sistemática Molecular, Escuela de Estudios Superiores del Jicarero, Universidad Autónoma del Estado de Morelos, Jojutla, Morelos, Mexico.
J Theor Biol. 2020 Aug 21;499:110316. doi: 10.1016/j.jtbi.2020.110316. Epub 2020 May 5.
One of the most striking features of a living system is the self-sustaining functional inner organization, which is only possible when a source of internal references is available from which the system is able to self-organize components and processes. Internal references are intrinsically related to biological information, which is typically understood as genetic information. However, the organization in living systems supports a diversity of intricate processes that enable life to endure, adapt and reproduce because of this organization. In a biological context, information refers to a complex relationship between internal architecture and system functionality. Nongenetic processes, such as conformational recognition, are not considered biological information, although they exert important control over cell processes. In this contribution, we discuss the informational nature in the recognition of molecular shape in living systems. Thus, we highlight supramolecular matching as having a theoretical key role in the origin of life. Based on recent data, we demonstrate that the transfer of molecular conformation is a very likely dynamic of prebiotic information, which is closely related to the origin of biological homochirality and biogenic systems. In light of the current hypothesis, we also revisit the central dogma of molecular biology to assess the consistency of the proposal presented here. We conclude that both spatial (molecular shape) and sequential (genetic) information must be represented in this biological paradigm.
生命系统最显著的特征之一是其自我维持的功能性内部组织,而这只有在存在内部参考源时才有可能实现,系统能够据此自我组织其组件和过程。内部参考与生物信息本质上相关,生物信息通常被理解为遗传信息。然而,生命系统中的组织支持着各种各样复杂的过程,这些过程使生命能够因这种组织而得以存续、适应和繁殖。在生物学背景下,信息指的是内部结构与系统功能之间的复杂关系。非遗传过程,如构象识别,虽然对细胞过程发挥着重要控制作用,但并不被视为生物信息。在本论文中,我们讨论了生命系统中分子形状识别的信息本质。因此,我们强调超分子匹配在生命起源中具有理论上的关键作用。基于最近的数据,我们证明分子构象的传递是前生物信息一种非常可能的动态过程,这与生物同手性和生物系统的起源密切相关。根据当前的假说,我们还重新审视了分子生物学的中心法则,以评估此处提出的观点的一致性。我们得出结论,在这种生物学范式中,空间(分子形状)和序列(遗传)信息都必须得到体现。