Förster G, Schwieger C, Faber F, Weber T, Blume A
Institute of Physical Chemistry, Martin-Luther-University Halle-Wittenberg, Halle, Germany.
Eur Biophys J. 2007 Apr;36(4-5):425-35. doi: 10.1007/s00249-006-0087-1. Epub 2006 Aug 15.
The interaction between the negatively charged phospholipid DPPG and positively charged poly(L: -lysine) (PLL) of different lengths was studied by X-ray scattering in the SAXS and WAXS region. As a reference pure DPPG (Na salt) was investigated over a wide temperature range (-30 to 70 degrees C). The phase behavior of DPPG in aqueous and in buffer/salt dispersions showed a metastable subgel phase at low temperatures and a recrystallization upon heating before reaching the liquid-crystalline phase. The presence of additional salt stabilizes the bilayer structure and decreases the recrystallization temperature. Large changes in the SAXS region are not connected with changes in chain packing. In DPPG/PLL samples, the PLL is inserted between adjacent headgroup layers and liberates counterions which give rise to a freezing point depression. In the complex with DPPG PLL form an alpha-helical secondary structure at pH 7 and temperatures below the gel to liquid-crystalline phase transition. This prevents DPPG from recrystallization and strongly increases the stacking order. The lamellar repeat distance is decreased and fixed by the helix conformation of PLL in the gel phase. PLL with n = 14 is too short to form helices and is squeezed out reversibly from the interbilayer space upon cooling by freezing of trapped water. In dispersions with longer PLLs (n > 400) at -20 degrees C a 1D crystallization of PLL alpha-helices in the aqueous layer between the headgroups takes place. A structural model is presented for the lateral periodic complex, which is similar to the known cationic lipid/DNA complex.
通过小角X射线散射(SAXS)和广角X射线散射(WAXS)区域的X射线散射研究了带负电荷的磷脂二棕榈酰磷脂酰甘油(DPPG)与不同长度的带正电荷的聚(L-赖氨酸)(PLL)之间的相互作用。作为参考,对纯DPPG(钠盐)在较宽温度范围(-30至70摄氏度)内进行了研究。DPPG在水性和缓冲液/盐分散体中的相行为在低温下显示出亚稳亚凝胶相,加热时在达到液晶相之前会发生重结晶。额外盐的存在稳定了双层结构并降低了重结晶温度。SAXS区域的大变化与链堆积的变化无关。在DPPG/PLL样品中,PLL插入相邻的头基团层之间并释放抗衡离子,这导致冰点降低。在与DPPG形成的复合物中,PLL在pH 7且温度低于凝胶到液晶相转变温度时形成α-螺旋二级结构。这可防止DPPG重结晶并强烈增加堆积顺序。层状重复距离减小并由凝胶相中PLL的螺旋构象固定。n = 14的PLL太短而无法形成螺旋,并且在冷却时通过捕获水的冻结从双层间空间可逆地挤出。在-20摄氏度下与较长PLL(n> 400)的分散体中,头基团之间的水层中发生PLLα-螺旋的一维结晶。提出了一种横向周期性复合物的结构模型,其类似于已知的阳离子脂质/DNA复合物。