Kristofiková Zdena, Kopecký Vladimír, Hofbauerová Katerina, Hovorková Petra, Rípová Daniela
Alzheimer Disease Centre, Prague Psychiatric Centre, Ustavní 91, Prague 8 - Bohnice 181 03, Czech Republic.
Neurochem Res. 2008 Mar;33(3):412-21. doi: 10.1007/s11064-007-9443-5. Epub 2007 Aug 24.
Brains of Alzheimer disease patients in early stages of dementia contain an increased 24(S)-hydroxycholesterol (cerebrosterol)/cholesterol ratio when compared to controls. In this study, effects of amyloid beta peptides and of racemic 24-hydroxycholesterol were evaluated in vitro on undepleted or cholesterol-depleted hippocampal synaptosomes of young and old rats via a high-affinity choline transport and membrane anisotropy measurements. Depletion of membrane cholesterol decreased the transport of [3H]choline, increased the specific binding of [3H]hemicholinium-3 and decreased membrane anisotropy. However, less alterations were found in old when compared to young brains. 500 nM nonaggregated peptides were ineffective but aggregated fragment 1-42 evoked marked drops in the transport and anisotropy values on depleted synaptosomes. 50 microM 24-hydroxycholesterol inhibited choline transport on depleted synaptosomes but it did not influence membrane anisotropy. Peptides eliminated the actions of oxysterol on choline carriers in young but not in old rats. On the other hand, oxysterol eliminated the effects of peptides on membrane anisotropy. Our study suggests a possible role of membrane cholesterol in the regulation of choline carriers and supports data reporting a protective role of membrane cholesterol against toxic effects of amyloid beta peptides. Moreover, via Raman spectroscopy we demonstrate for the first time that peptides form a complex with 24-hydroxycholesterol.
与对照组相比,处于痴呆早期的阿尔茨海默病患者大脑中24(S)-羟基胆固醇(脑甾醇)/胆固醇的比例有所增加。在本研究中,通过高亲和力胆碱转运和膜各向异性测量,在体外评估了淀粉样β肽和消旋24-羟基胆固醇对年轻和老年大鼠未耗尽或胆固醇耗尽的海马突触体的影响。膜胆固醇的耗尽降低了[3H]胆碱的转运,增加了[3H]半胱氨酸-3的特异性结合,并降低了膜各向异性。然而,与年轻大脑相比,老年大脑中的变化较少。500 nM的非聚集肽无效,但聚集的片段1-42在耗尽的突触体上引起转运和各向异性值的显著下降。50 microM的24-羟基胆固醇抑制了耗尽突触体上的胆碱转运,但不影响膜各向异性。肽消除了氧化甾醇对年轻大鼠胆碱载体的作用,但对老年大鼠没有作用。另一方面,氧化甾醇消除了肽对膜各向异性的影响。我们的研究表明膜胆固醇在胆碱载体调节中可能发挥作用,并支持有关膜胆固醇对淀粉样β肽毒性作用具有保护作用的数据报道。此外,通过拉曼光谱,我们首次证明肽与24-羟基胆固醇形成复合物。