Breukink E, Demel R A, de Korte-Kool G, de Kruijff B
Department of Biochemistry of Membranes, University of Utrecht, The Netherlands.
Biochemistry. 1992 Feb 4;31(4):1119-24. doi: 10.1021/bi00119a021.
SecA-lipid interactions are believed to be important for the translocation of precursor proteins across the inner membrane of Escherichia coli [Lill, R., Dowhan, W., & Wickner, W. (1990) Cell 60, 271-280]. SecA insertion into the phospholipid bilayer could a role in this process. We investigated this possibility by studying the interactions between SecA and different phospholipids using the monolayer technique. It was established that SecA is surface-active and can insert into lipid monolayers. This insertion was greatly enhanced by the negatively charged lipids DOPG and Escherichia coli cardiolipin. Insertion of SecA into these negatively charged lipids could be detected up to initial surface pressures of 34 mN/m for DOPG and 36 mN/m for Escherichia coli cardiolipin, implying a possible role for negatively charged lipids in the insertion of SecA in biological membranes. High salt concentrations did not inhibit the SecA insertion into DOPG monolayers, suggesting not only an electrostatic but also a hydrophobic interaction of SecA with the lipid monolayer. ATP decreased both the insertion (factor 2) and binding (factor 3) of SecA to DOPG monolayers. ADP and phosphate gave a decrease in the SecA insertion to the same extent as ATP, but the binding of SecA was only slightly reduced. AMP-PNP and ATP-gamma-S did not have large effects on the insertion or on the binding of SecA to DOPG monolayers. The physiological significance of these results in protein translocation is discussed.
SecA与脂质的相互作用被认为对前体蛋白穿过大肠杆菌内膜的转运过程很重要[Lill, R., Dowhan, W., & Wickner, W. (1990) 细胞60, 271 - 280]。SecA插入磷脂双分子层可能在这一过程中发挥作用。我们通过使用单分子层技术研究SecA与不同磷脂之间的相互作用来探究这种可能性。已确定SecA具有表面活性,能够插入脂质单分子层。带负电荷的脂质二油酰磷脂酰甘油(DOPG)和大肠杆菌心磷脂极大地增强了这种插入。对于DOPG,在高达34 mN/m的初始表面压力下以及对于大肠杆菌心磷脂在高达36 mN/m的初始表面压力下,都能检测到SecA插入这些带负电荷的脂质中,这意味着带负电荷的脂质在SecA插入生物膜过程中可能发挥作用。高盐浓度并不抑制SecA插入DOPG单分子层,这表明SecA与脂质单分子层之间不仅存在静电相互作用,还存在疏水相互作用。ATP降低了SecA插入DOPG单分子层的程度(2倍因子)以及结合程度(3倍因子)。ADP和磷酸使SecA插入程度的降低与ATP相同,但SecA的结合仅略有减少。腺苷酰亚胺二磷酸(AMP-PNP)和ATP-γ-S对SecA插入或与DOPG单分子层的结合没有很大影响。本文讨论了这些结果在蛋白质转运中的生理意义。