Locke Darren, Harris Andrew L
Department of Pharmacology and Physiology, New Jersey Medical School, University of Medicine and Dentistry of New Jersey, Newark, New Jersey 07103, USA.
BMC Biol. 2009 Aug 17;7:52. doi: 10.1186/1741-7007-7-52.
For membrane proteins, lipids provide a structural framework and means to modulate function. Paired connexin hemichannels form the intercellular channels that compose gap junction plaques while unpaired hemichannels have regulated functions in non-junctional plasma membrane. The importance of interactions between connexin channels and phospholipids is poorly understood.
Endogenous phospholipids most tightly associated with purified connexin26 or connexin32 hemichannels or with junctional plaques in cell membranes, those likely to have structural and/or modulatory effects, were identified by tandem electrospray ionization-mass spectrometry using class-specific interpretative methods. Phospholipids were characterized by headgroup class, charge, glycerol-alkyl chain linkage and by acyl chain length and saturation. The results indicate that specific endogenous phospholipids are uniquely associated with either connexin26 or connexin32 channels, and some phospholipids are associated with both. Functional effects of the major phospholipid classes on connexin channel activity were assessed by molecular permeability of hemichannels reconstituted into liposomes. Changes to phospholipid composition(s) of the liposome membrane altered the activity of connexin channels in a manner reflecting changes to the surface charge/potential of the membrane and, secondarily, to cholesterol content. Together, the data show that connexin26 and connexin32 channels have a preference for tight association with unique anionic phospholipids, and that these, independent of headgroup, have a positive effect on the activity of both connexin26 and connexin32 channels. Additionally, the data suggest that the likely in vivo phospholipid modulators of connexin channel structure-function that are connexin isoform-specific are found in the cytoplasmic leaflet. A modulatory role for phospholipids that promote negative curvature is also inferred.
This study is the first to identify (endogenous) phospholipids that tightly associate with connexin channels. The finding that specific phospholipids are associated with different connexin isoforms suggests connexin-specific regulatory and/or structural interactions with lipid membranes. The results are interpreted in light of connexin channel function and cell biology, as informed by current knowledge of lipid-protein interactions and membrane biophysics. The intimate involvement of distinct phospholipids with different connexins contributes to channel structure and/or function, as well as plaque integrity, and to modulation of connexin channels by lipophilic agents.
对于膜蛋白而言,脂质提供了结构框架以及调节功能的方式。成对的连接蛋白半通道形成构成间隙连接斑的细胞间通道,而未配对的半通道在非连接质膜中具有受调控的功能。连接蛋白通道与磷脂之间相互作用的重要性目前了解甚少。
通过使用类特异性解释方法的串联电喷雾电离质谱法,鉴定出了与纯化的连接蛋白26或连接蛋白32半通道或细胞膜中的连接斑最紧密相关的内源性磷脂,这些磷脂可能具有结构和/或调节作用。磷脂通过头部基团类别、电荷、甘油 - 烷基链连接以及酰基链长度和饱和度来表征。结果表明,特定的内源性磷脂与连接蛋白26或连接蛋白32通道独特相关,并且一些磷脂与两者都相关。通过重组到脂质体中的半通道的分子通透性评估了主要磷脂类别对连接蛋白通道活性的功能影响。脂质体膜磷脂组成的变化以反映膜表面电荷/电位变化以及其次胆固醇含量变化的方式改变了连接蛋白通道的活性。总之,数据表明连接蛋白26和连接蛋白32通道倾向于与独特的阴离子磷脂紧密结合,并且这些磷脂独立于头部基团,对连接蛋白26和连接蛋白32通道的活性都有积极影响。此外,数据表明连接蛋白同工型特异性的、可能在体内调节连接蛋白通道结构 - 功能的磷脂调节剂存在于细胞质小叶中。还推断出促进负曲率的磷脂具有调节作用。
本研究首次鉴定出与连接蛋白通道紧密结合的(内源性)磷脂。特定磷脂与不同连接蛋白同工型相关的发现表明连接蛋白与脂质膜存在特异性的调节和/或结构相互作用。根据连接蛋白通道功能和细胞生物学,结合当前对脂质 - 蛋白质相互作用和膜生物物理学的了解来解释这些结果。不同磷脂与不同连接蛋白的密切参与有助于通道结构和/或功能以及斑的完整性,以及亲脂性试剂对连接蛋白通道的调节。