Comparison of the stabilities and unfolding pathways of human apolipoprotein E isoforms by differential scanning calorimetry and circular dichroism

被引:67
作者
Acharya, P
Segall, ML
Zaiou, M
Morrow, J
Weisgraber, KH
Phillips, MC
Lund-Katz, S
Snow, J [1 ]
机构
[1] Univ Sci Philadelphia, Dept Chem & Biochem, Philadelphia, PA 19104 USA
[2] Univ Penn, Sch Med, Childrens Hosp Philadelphia, Joseph Stokes Jr Res Inst, Philadelphia, PA 19104 USA
[3] Univ Calif San Francisco, Gladstone Inst Cardiovasc Dis, San Francisco, CA 94141 USA
[4] Univ Calif San Francisco, Gladstone Inst Neurol Dis, San Francisco, CA 94141 USA
来源
BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR AND CELL BIOLOGY OF LIPIDS | 2002年 / 1584卷 / 01期
关键词
apolipoprotein E; differential scanning calorimetry; circular dichroism;
D O I
10.1016/S1388-1981(02)00263-9
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 [生物化学与分子生物学]; 081704 [应用化学];
摘要
Differential scanning calorimetry and circular dichroism experiments were performed to study structural differences among the common isoforms of human apolipoprotein E (apoE2, apoE3, and apoE4) and their N-terminal, 22-kDa fragments. Here, we examine thermodynamic properties that characterize the structural differences among isoforms, and also differences in their unfolding behavior The 22-kDa fragments and their full-length counterparts were found to exhibit similar differences in thermal stability (apoE4 < apoE3 < apoE2; T-max approximate to 52 < 56 < 59 degreesC, respectively). Helical contents at the onset and completion of denaturation (as monitored calorimetrically) were about 51% and 35%, respectively, for 22-kDa apoE3. As much as 70% of the unfolding enthalpy for 22-kDa apoE3 could be due to disruption of a-helix. The monomeric 22-kDa fragments unfold differently, with both apoE3 and apoE4 exhibiting unfolding intermediates, whereas apoE2 unfolds according to a two-state mechanism. Interactions with the C-terminal domain appear to destabilize the N-terminal domains in full-length apoE2 and apoE3, but less so for full-length apoE4. Self-association of full-length apoE at higher concentrations (1.5-2.5 mg/ml), as well as interaction of full-length apoE with phospholipid, enhances thermal stability. Cooperative changes in secondary structure, as monitored by circular dichroism, begin near 37 degreesC for full-length apoE3 and apoE4, indicating that full-length apoE3 and apoE4, but not apoE2, may be partially unfolded in vivo. The differences in stability and unfolding behavior are likely to contribute to the molecular basis for defects in lipid transport and neurological function induced by apoE polymorphism. (C) 2002 Elsevier Science B.V. All rights reserved.
引用
收藏
页码:9 / 19
页数:11
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