Dowhan William, Mileykovskaya Eugenia, Bogdanov Mikhail
Department of Biochemistry and Molecular Biology, University of Texas-Houston, Medical School, Suite 6.200, 6431 Fannin St., Houston, TX, 77030, USA.
Biochim Biophys Acta. 2004 Nov 3;1666(1-2):19-39. doi: 10.1016/j.bbamem.2004.04.010.
The diversity in structures and physical properties of lipids provides a wide variety of possible interactions with proteins that affect their assembly, organization, and function either at the surface of or within membranes. Because lipids have no catalytic activity, it has been challenging to define many of their precise functions in vivo in molecular terms. Those processes responsive to lipids are attuned to the native lipid environment for optimal function, but evidence that lipids with similar properties or even detergents can sometimes partially replace the natural lipid environment has led to uncertainty as to the requirement for specific lipids. The development of strains of microorganisms in which membrane lipid composition can be genetically manipulated in viable cells has provided a set of reagents to probe lipid functions. These mutants have uncovered previously unrecognized roles for lipids and provided in vivo verification for putative functions described in vitro. In this review, we summarize how these reagent strains have provided new insight into the function of lipids. The role of specific lipids in membrane protein folding and topological organization is reviewed. The evidence is summarized for the involvement of anionic lipid-enriched domains in the organization of amphitropic proteins on the membrane surface into molecular machines involved in DNA replication and cell division.
脂质在结构和物理性质上的多样性使其与蛋白质之间存在多种可能的相互作用,这些相互作用会影响蛋白质在膜表面或膜内的组装、组织及其功能。由于脂质没有催化活性,因此从分子层面明确其在体内的许多精确功能具有挑战性。那些对脂质有反应的过程会适应天然脂质环境以实现最佳功能,但有证据表明,具有相似性质的脂质甚至去污剂有时可以部分替代天然脂质环境,这导致了对于特定脂质需求的不确定性。能够在活细胞中对膜脂质组成进行基因操作的微生物菌株的开发,为探究脂质功能提供了一系列试剂。这些突变体揭示了脂质以前未被认识的作用,并为体外描述的假定功能提供了体内验证。在这篇综述中,我们总结了这些试剂菌株如何为脂质功能提供了新的见解。本文还综述了特定脂质在膜蛋白折叠和拓扑组织中的作用。总结了富含阴离子脂质的结构域参与将膜表面的两性蛋白组织成参与DNA复制和细胞分裂的分子机器的证据。