Chakraborty Hirak, Haldar Sourav, Chong Parkson Lee-Gau, Kombrabail Mamata, Krishnamoorthy G, Chattopadhyay Amitabha
CSIR-Centre for Cellular and Molecular Biology , Uppal Road, Hyderabad 500 007, India.
School of Chemistry, Sambalpur University , Burla, Odisha 768 019, India.
Langmuir. 2015 Oct 27;31(42):11591-7. doi: 10.1021/acs.langmuir.5b02760. Epub 2015 Oct 19.
The lipid composition of archaea is unique and has been correlated with increased stability under extreme environmental conditions. In this article, we have focused on the evolution of membrane organization and dynamics with natural evolution. Dynamic anisotropy along the membrane normal (i.e., gradients of mobility, polarity, and heterogeneity) is a hallmark of fluid phase diester or diether phospholipid membranes. We monitored gradients of mobility, polarity, and heterogeneity along the membrane normal in membranes made of a representative archaeal lipid using a series of membrane depth-dependent fluorescent probes, and compared them to membranes prepared from a typical diether lipid from higher organisms (eukaryotes). Our results show that the representative dynamic anisotropy gradient along the membrane normal is absent in membranes made from archaeal lipids. We hypothesize that the dynamic gradient observed in membranes of diester and diether phospholipids is a consequence of natural evolution of membrane lipids in response to the requirement of carrying out complex cellular functions by membrane proteins.
古菌的脂质组成独特,并且与在极端环境条件下稳定性的提高相关。在本文中,我们着重研究了膜组织和动力学随自然进化的演变。沿膜法线方向的动态各向异性(即流动性、极性和异质性梯度)是液相二酯或二醚磷脂膜的一个特征。我们使用一系列依赖于膜深度的荧光探针监测了由代表性古菌脂质制成的膜中沿膜法线方向的流动性、极性和异质性梯度,并将其与由高等生物(真核生物)的典型二醚脂质制备的膜进行了比较。我们的结果表明,由古菌脂质制成的膜中不存在沿膜法线方向的代表性动态各向异性梯度。我们推测,在二酯和二醚磷脂膜中观察到的动态梯度是膜脂质自然进化的结果,以响应膜蛋白执行复杂细胞功能的需求。