Pohorille Andrew, Schweighofer Karl, Wilson Michael A
NASA Ames Research Center, Moffett Field, California 94035, USA.
Astrobiology. 2005 Feb;5(1):1-17. doi: 10.1089/ast.2005.5.1.
The origin and early evolution of ion channels are considered from the point of view that the transmembrane segments of membrane proteins are structurally quite simple and do not require specific sequences to fold. We argue that the transport of solute species, especially ions, required an early evolution of efficient transport mechanisms, and that the emergence of simple ion channels was protobiologically plausible. We also argue that, despite their simple structure, such channels could possess properties that, at the first sight, appear to require markedly greater complexity. These properties can be subtly modulated by local modifications to the sequence rather than global changes in molecular architecture. In order to address the evolution and development of ion channels, we focus on identifying those protein domains that are commonly associated with ion channel proteins and are conserved throughout the three main domains of life (Eukarya, Bacteria, and Archaea). We discuss the potassium-sodium-calcium superfamily of voltage-gated ion channels, mechanosensitive channels, porins, and ABC-transporters and argue that these families of membrane channels have sufficiently universal architectures that they can readily adapt to the diverse functional demands arising during evolution.
从膜蛋白的跨膜片段在结构上相当简单且不需要特定序列来折叠这一观点出发,探讨离子通道的起源和早期演化。我们认为,溶质种类尤其是离子的运输需要高效运输机制的早期演化,并且简单离子通道的出现从原生生物学角度来看是合理的。我们还认为,尽管这些通道结构简单,但它们可能具有乍一看似乎需要显著更高复杂性的特性。这些特性可以通过对序列的局部修饰而非分子结构的整体变化进行微妙调节。为了探讨离子通道的演化和发展,我们着重识别那些通常与离子通道蛋白相关且在生命的三个主要领域(真核生物、细菌和古细菌)中都保守的蛋白质结构域。我们讨论了电压门控离子通道、机械敏感通道、孔蛋白和ABC转运蛋白的钾 - 钠 - 钙超家族,并认为这些膜通道家族具有足够通用的结构,能够轻松适应演化过程中出现的各种功能需求。