Efficient solid-phase synthesis of Vpr from HIV-1 using low quantities of uniformly 13C-, 15N-labeled amino acids for NMR structural studies

被引:18
作者
Cornille, F
Wecker, K
Loffet, A
Genet, R
Rogues, B
机构
[1] UFR Sci Pharmaceut & Biol, CNRS, UMR 8600, INSERM,U266,Dept Pharmacochim Mol & Struct, F-75270 Paris 06, France
[2] SENN Chem AG, Dielsdorf, Switzerland
[3] Ctr Etud Saclay, CEA, Dept Ingn & Etud Prot, F-91191 Gif Sur Yvette, France
来源
JOURNAL OF PEPTIDE RESEARCH | 1999年 / 54卷 / 05期
关键词
heteronuclear NMR; HIV; solid-phase peptide synthesis; Vpr;
D O I
10.1034/j.1399-3011.1999.00129.x
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
The 96-amino acid protein Vpr functions as a regulator of cellular processes involved in the human immunodeficiency virus, type 1 (HIV-1) life cycle, including cell-cycle arrest at the G(2)/M check point, promotion of the HIV-1 preintegration complex for nuclear transport, induction of apoptosis and transcriptional activation of a variety of viral and cellular promoters. Preliminary H-1 NMR experiments performed on Vpr fragments showed the presence of several helical regions. However, the assignment of many protons in the amide region of the complete sequence of Vpr proved to be impossible due to the overlap of multiple NOE cross peaks. Moreover, because of its cytotoxicity, it is difficult to produce large quantities of N-15- and C-13-labeled Vpr using molecular biology approaches. Therefore, the solid-phase peptide synthesis of (1-96)Vpr, labeled at 22 selected positions, using recently commercially available uniformly C-13-, N-15-labeled fmoc amino acids, has been optimized to produce large quantities (104 mg, 15% yield) of pure compound, while minimizing the quantity of labeled amino acids used for each coupling. As expected two-dimensional heteronuclear NMR experiments performed with this protein allowed the unequivocal assignments of all the proton signals. This study shows that introduction of few labeled C-13/N-15 labeled amino acids in selected positions facilitates the determination of structure solution of small protein accessible by solid-phase peptide synthesis, and could allow dynamic studies of their conformational behavior to be carried out.
引用
收藏
页码:427 / 435
页数:9
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