Zannis Vassilis I, Koukos Georgios, Drosatos Konstantinos, Vezeridis Alexander, Zanni Eleni E, Kypreos Kyriakos E, Chroni Angeliki
Molecular Genetics, Whitaker Cardiovascular Institute, Departments of Medicine and Biochemistry, Boston University School of Medicine, Boston, MA 02118-2394, USA.
Ann Med. 2008;40 Suppl 1:14-28. doi: 10.1080/07853890701687219.
Using adenovirus-mediated gene transfer in apolipoprotein A-I (apoA-I)-deficient mice, we have established that apoA-I mutations inhibit discrete steps in a pathway that leads to the biogenesis and remodeling of high-density lipoprotein (HDL). To this point, five discrete categories of apoA-I mutants have been characterized that may affect the interactions of apoA-I with ATP-binding cassette superfamily A, member 1 (ABCA1) or lecithin:cholesterol acyl transferase (LCAT) or may influence the plasma phospholipid transfer protein activity or may cause various forms of dyslipidemia. Biogenesis of HDL is not a unique property of apoA-I. Using adenovirus-mediated gene transfer of apoE in apoA-I- or ABCA1-deficient mice, we have established that apolipoprotein E (apoE) also participates in a novel pathway of biogenesis of apoE-containing HDL particles. This process requires the functions of the ABCA1 lipid transporter and LCAT, and it is promoted by substitution of hydrophobic residues in the 261 to 269 region of apoE by Ala. The apoE-containing HDL particles formed in the circulation may have atheroprotective properties. ApoE-containing HDL may also have important biological functions in the brain that confer protection from Alzheimer's disease.
通过在载脂蛋白A-I(apoA-I)缺陷小鼠中使用腺病毒介导的基因转移,我们已经确定apoA-I突变会抑制导致高密度脂蛋白(HDL)生物合成和重塑的途径中的离散步骤。至此,已经鉴定出五类离散的apoA-I突变体,它们可能影响apoA-I与ATP结合盒超家族A成员1(ABCA1)或卵磷脂:胆固醇酰基转移酶(LCAT)的相互作用,或者可能影响血浆磷脂转移蛋白活性,或者可能导致各种形式的血脂异常。HDL的生物合成并非apoA-I的独特特性。通过在apoA-I或ABCA1缺陷小鼠中使用腺病毒介导的apoE基因转移,我们已经确定载脂蛋白E(apoE)也参与了含apoE的HDL颗粒生物合成的新途径。这个过程需要ABCA1脂质转运蛋白和LCAT的功能,并且通过将apoE的261至269区域中的疏水残基替换为丙氨酸来促进。在循环中形成的含apoE的HDL颗粒可能具有抗动脉粥样硬化特性。含apoE的HDL在大脑中也可能具有重要的生物学功能,可预防阿尔茨海默病。