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神经元蛋白NAP-22在水溶液中的四级结构。

Quaternary structure of the neuronal protein NAP-22 in aqueous solution.

作者信息

Epand Richard M, Braswell Emory H, Yip Christopher M, Epand Raquel F, Maekawa Shohei

机构信息

Health Sciences Center, Department of Biochemistry, McMaster University, 1200 Main Street West, Hamilton, ON, Canada L8N 3Z5.

出版信息

Biochim Biophys Acta. 2003 Aug 21;1650(1-2):50-8. doi: 10.1016/s1570-9639(03)00191-2.

Abstract

NAP-22, a myristoylated, anionic protein, is a major protein component of the detergent-insoluble fraction of neurons. After extraction from the membrane, it is readily soluble in water. NAP-22 will partition only into membranes with specific lipid compositions. The lipid specificity is not expected for a monomeric myristoylated protein. We have studied the self-association of NAP-22 in solution. Sedimentation velocity experiments indicated that the protein is largely associated. The low concentration limiting s value is approximately 1.3 S, indicating a highly asymmetric monomer. In contrast, a nonmyristoylated form of the protein shows no evidence of oligomerization by velocity sedimentation and has an s value corresponding to the smallest component of NAP-22, but without the presence of higher oligomers. Sedimentation equilibrium runs indicate that there is a rapidly reversible equilibrium between monomeric and oligomeric forms of the protein followed by a slower, more irreversible association into larger aggregates. In situ atomic force microscopy of the protein deposited on mica from freshly prepared dilute solution revealed dimers on the mica surface. The values of the association constants obtained from the sedimentation equilibrium data suggest that the weight concentration of the monomer exceeds that of the dimer below a total protein concentration of 0.04 mg/ml. Since the concentration of NAP-22 in the neurons of the developing brain is approximately 0.6 mg/ml, if the protein were in solution, it would be in oligomeric form and bind specifically to cholesterol-rich domains. We demonstrate, using fluorescence resonance energy transfer, that at low concentrations, NAP-22 labeled with Texas Red binds equally well to liposomes of phosphatidylcholine either with or without the addition of 40 mol% cholesterol. Thus, oligomerization of NAP-22 contributes to its lipid selectivity during membrane binding.

摘要

NAP - 22是一种肉豆蔻酰化的阴离子蛋白,是神经元去污剂不溶性部分的主要蛋白质成分。从膜中提取后,它很容易溶于水。NAP - 22只会分配到具有特定脂质组成的膜中。对于单体肉豆蔻酰化蛋白来说,这种脂质特异性是出乎意料的。我们研究了NAP - 22在溶液中的自缔合。沉降速度实验表明该蛋白主要以缔合形式存在。低浓度极限s值约为1.3 S,表明是高度不对称的单体。相比之下,该蛋白的非肉豆蔻酰化形式在速度沉降实验中没有显示出寡聚化的迹象,其s值对应于NAP - 22的最小组分,但不存在更高的寡聚体。沉降平衡实验表明,该蛋白的单体和寡聚体形式之间存在快速可逆的平衡,随后是较慢且更不可逆地聚合成更大的聚集体。对刚制备的稀溶液中沉积在云母上的蛋白进行原位原子力显微镜观察,发现云母表面有二聚体。从沉降平衡数据获得的缔合常数表明,在总蛋白浓度低于0.04 mg/ml时,单体的重量浓度超过二聚体。由于发育中大脑神经元中NAP - 22的浓度约为0.6 mg/ml,如果该蛋白处于溶液中,它将以寡聚体形式存在并特异性结合富含胆固醇的结构域。我们使用荧光共振能量转移证明,在低浓度下,用德克萨斯红标记的NAP - 22与添加或不添加40 mol%胆固醇的磷脂酰胆碱脂质体结合效果相同。因此,NAP - 22的寡聚化有助于其在膜结合过程中的脂质选择性。

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