Smith Jillian E, Mowles Allisandra K, Mehta Anil K, Lynn David G
Department of Chemistry and Biology, Emory University, 1515 Dickey Drive, Atlanta, GA 30322, USA.
Life (Basel). 2014 Dec 11;4(4):887-902. doi: 10.3390/life4040887.
As the molecular top-down causality emerging through comparative genomics is combined with the bottom-up dynamic chemical networks of biochemistry, the molecular symbiotic relationships driving growth of the tree of life becomes strikingly apparent. These symbioses can be mutualistic or parasitic across many levels, but most foundational is the complex and intricate mutualism of nucleic acids and proteins known as the central dogma of biological information flow. This unification of digital and analog molecular information within a common chemical network enables processing of the vast amounts of information necessary for cellular life. Here we consider the molecular information pathways of these dynamic biopolymer networks from the perspective of their evolution and use that perspective to inform and constrain pathways for the construction of mutualistic polymers.
随着通过比较基因组学显现的分子自上而下的因果关系与生物化学自下而上的动态化学网络相结合,驱动生命之树生长的分子共生关系变得极为明显。这些共生关系在许多层面上可以是互利共生的或寄生的,但最基础的是核酸与蛋白质之间复杂而精细的互利共生关系,即生物信息流的中心法则。这种数字与模拟分子信息在一个共同化学网络中的统一,使得处理细胞生命所需的大量信息成为可能。在这里,我们从这些动态生物聚合物网络的进化角度来考虑其分子信息途径,并利用该角度为构建互利聚合物的途径提供信息并加以限制。