Barnham K J, Monks S A, Hinds M G, Azad A A, Norton R S
Biomolecular Research Institute, Parkville, Victoria, Australia.
Biochemistry. 1997 May 20;36(20):5970-80. doi: 10.1021/bi9629945.
Nef is a 27 kDa myristylated phosphoprotein expressed early in infection by HIV. The N terminus of Nef is thought to play a vital role in the functions of this protein through its interactions with membrane structures. The solution structure of a 25-residue polypeptide corresponding to the N terminus of Nef (Nef1-25) has been investigated by 1H NMR spectroscopy. In aqueous solution at pH 4.8 and 281 K, this peptide underwent conformational averaging, with Pro13 existing in cis and trans conformations in nearly equal proportions. In methanol solution, however, the peptide adopted a well-defined alpha-helical structure from residues 6 to 22, with the N- and C-terminal regions having a less ordered structure. On the basis of a comparison of chemical shifts and NOEs, it appeared that this helical structure was maintained in aqueous trifluoroethanol (50% v/v) and to a lesser extent in a solution of SDS micelles. When the N-acetyl group was replaced by either an N-myristyl or a free ammonium group, there was little effect on the three-dimensional structure of the peptide in methanol; deamidation of the C terminus also had no effect on the structure in methanol. In water, the myristylated peptide aggregated. The similarity between the sequences of Nef1-25 and melittin is reflected in the similar structures of the two molecules, although the N-terminal helix of melittin is more defined. This similarity in structure raises the possibility that Nef1-25 not only interacts with membranes but also may be capable of disrupting them and causing cell lysis. This type of interaction could contribute at least in part to the killing of bystander cells in lymphoid tissues during HIV infection.
Nef是一种27 kDa的肉豆蔻酰化磷蛋白,在HIV感染早期表达。Nef的N末端被认为通过与膜结构的相互作用在该蛋白的功能中发挥至关重要的作用。通过1H NMR光谱研究了与Nef的N末端(Nef1-25)相对应的25个残基多肽的溶液结构。在pH 4.8和281 K的水溶液中,该肽经历构象平均化,Pro13以顺式和反式构象存在,比例几乎相等。然而,在甲醇溶液中,该肽从第6位到第22位残基采用了明确的α-螺旋结构,N端和C端区域结构较无序。基于化学位移和NOE的比较,似乎这种螺旋结构在三氟乙醇水溶液(50% v/v)中得以维持,在SDS胶束溶液中维持程度较小。当N-乙酰基被N-肉豆蔻酰基或游离铵基团取代时,对该肽在甲醇中的三维结构几乎没有影响;C末端的脱酰胺作用对甲醇中的结构也没有影响。在水中,肉豆蔻酰化的肽会聚集。Nef1-25和蜂毒肽序列之间的相似性反映在这两个分子的相似结构中,尽管蜂毒肽的N端螺旋更明确。这种结构上的相似性增加了Nef1-25不仅与膜相互作用,而且可能能够破坏膜并导致细胞裂解的可能性。这种类型的相互作用至少可以部分解释HIV感染期间淋巴组织中旁观者细胞的死亡。