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Structural characterization of MG and pre-MG states of proteins by MD simulations, NMR, and other techniques

期刊

JOURNAL OF BIOMOLECULAR STRUCTURE & DYNAMICS
卷 33, 期 10, 页码 2267-2284

出版社

TAYLOR & FRANCIS INC
DOI: 10.1080/07391102.2014.999354

关键词

molten globule; protein folding; MD simulation; thermodynamic stability; nuclear magnetic resonance; protein denaturation; pre-molten globule

资金

  1. Department of Science and Technology, Government of India
  2. Indian Council of Medical Research (INDIA)

向作者/读者索取更多资源

Almost all proteins fold via a number of partially structured intermediates such as molten globule (MG) and pre-molten globule states. Understanding the structure of these intermediates at atomic level is often a challenge, as these states are observed under extreme conditions of pH, temperature, and chemical denaturants. Furthermore, several other processes such as chemical modification, site-directed mutagenesis (or point mutation), and cleavage of covalent bond of natural proteins often lead to MG like partially unfolded conformation. However, the dynamic nature of proteins in these states makes them unsuitable for most structure determination at atomic level. Intermediate states studied so far have been characterized mostly by circular dichroism, fluorescence, viscosity, dynamic light scattering measurements, dye binding, infrared techniques, molecular dynamics simulations, etc. There is a limited amount of structural data available on these intermediate states by nuclear magnetic resonance (NMR) and hence there is a need to characterize these states at the molecular level. In this review, we present characterization of equilibrium intermediates by biophysical techniques with special reference to NMR.

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