Institute of Biochemistry, Biological Research Centre, 6726 Szeged, Hungary.
Institute of Medical Biology, University of Tromsø, 9008 Tromsø, Norway.
Int J Mol Sci. 2022 Jun 30;23(13):7317. doi: 10.3390/ijms23137317.
Small heat shock proteins (sHSPs) have been demonstrated to interact with lipids and modulate the physical state of membranes across species. Through these interactions, sHSPs contribute to the maintenance of membrane integrity. HSPB1 is a major sHSP in mammals, but its lipid interaction profile has so far been unexplored. In this study, we characterized the interaction between HSPB1 and phospholipids. HSPB1 not only associated with membranes via membrane-forming lipids, but also showed a strong affinity towards highly fluid membranes. It participated in the modulation of the physical properties of the interacting membranes by altering rotational and lateral lipid mobility. In addition, the in vivo expression of HSPB1 greatly affected the phase behavior of the plasma membrane under membrane fluidizing stress conditions. In light of our current findings, we propose a new function for HSPB1 as a membrane chaperone.
小分子热休克蛋白 (sHSPs) 已被证明可与脂质相互作用,并调节跨物种的膜物理状态。通过这些相互作用,sHSPs 有助于维持膜的完整性。HSPB1 是哺乳动物中的主要 sHSP,但迄今为止,其脂质相互作用谱尚未得到探索。在这项研究中,我们描述了 HSPB1 与磷脂之间的相互作用。HSPB1 不仅通过形成膜的脂质与膜结合,而且对高度流动的膜表现出很强的亲和力。它通过改变旋转和横向脂质流动性来参与调节相互作用的膜的物理性质。此外,HSPB1 的体内表达极大地影响了在膜流体化应激条件下质膜的相行为。根据我们目前的发现,我们提出了 HSPB1 作为膜伴侣的新功能。