...
首页> 外文期刊>Artificial Life >An Effective Hierarchical Model for the Biomolecular Covalent Bond: An Approach Integrating Artificial Chemistry and an Actual Terrestrial Life System
【24h】

An Effective Hierarchical Model for the Biomolecular Covalent Bond: An Approach Integrating Artificial Chemistry and an Actual Terrestrial Life System

机译:生物分子共价键的有效层次模型:结合人工化学和实际陆地生命系统的方法

获取原文
获取原文并翻译 | 示例

摘要

Under the AChem paradigm and the programmed self-decomposition (PSD) model, we propose a hierarchical model for the biomolecular covalent bond (HBCB model). This model assumes that terrestrial organisms arrange their biomolecules in a hierarchical structure according to the energy strength of their covalent bonds. It also assumes that they have evolutionarily selected the PSD mechanism of turning biological polymers (BPs) into biological monomers (BMs) as an efficient biomolecular recycling strategy. We have examined the validity and effectiveness of the HBCB model by coordinating two complementary approaches: biological experiments using existent terrestrial life, and simulation experiments using an AChem system. Biological experiments have shown that terrestrial life possesses a PSD mechanism as an endergonic, genetically regulated process and that hydrolysis, which decomposes a BP into BMs, is one of the main processes of such a mechanism. In simulation experiments, we compared different virtual self-decomposition processes. The virtual species in which the self-decomposition process mainly involved covalent bond cleavage from a BP to BMs showed evolutionary superiority over other species in which the self-decomposition process involved cleavage from BP to classes lower than BM. These converging findings strongly support the existence of PSD and the validity and effectiveness of the HBCB model.
机译:在AChem范式和程序设计的自分解(PSD)模型下,我们提出了生物分子共价键的层次模型(HBCB模型)。该模型假定陆生生物根据其共价键的能量强度将其生物分子排列成分层结构。还假设他们已经进化选择了将生物聚合物(BPs)转变为生物单体(BMs)的PSD机制,作为有效的生物分子回收策略。我们已经通过协调两种互补的方法检查了HBCB模型的有效性和有效性:使用现有地球生命的生物学实验和使用AChem系统的模拟实验。生物学实验表明,陆生生物具有PSD机制,这是一个雌激素基因调控过程,而将BP分解为BM的水解是这种机制的主要过程之一。在模拟实验中,我们比较了不同的虚拟自分解过程。自分解过程主要涉及从BP裂解为BM的共价键的虚拟物种显示出比其他物种的自分解过程涉及从BP裂解为低于BM的进化的优势。这些趋同的发现强有力地支持了PSD的存在以及HBCB模型的有效性和有效性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号