## Abstract Macromolecular crowding is expected to have several significant effects on protein aggregation; the major effects will be those due to excluded volume and increased viscosity. In this report we summarize data demonstrating that macromolecular crowding may lead to a dramatic acceleration
Studies of effects of macromolecular crowding and confinement on protein folding and protein stability
β Scribed by Guanghui Ping; Jian-Min Yuan; Zhengfei Sun; Yen Wei
- Publisher
- John Wiley and Sons
- Year
- 2004
- Tongue
- English
- Weight
- 147 KB
- Volume
- 17
- Category
- Article
- ISSN
- 0952-3499
- DOI
- 10.1002/jmr.710
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β¦ Synopsis
Abstract
In cells, proteins execute specific tasks in crowded environments; these environments influence their stability and dynamics. Similarly, for an enzyme molecule encapsulated in an inorganic cavity as in biosensors or biocatalysts, confinement or excluded volume plays an important role in its stability and dynamics. In this article we present results of our experimental and theoretical investigations of the confinement and macromolecular crowding effects on protein. On the experimental side we study the stability of encapsulated cytochrome c against unfolding induced by the presence of denaturants, such as urea. Results show that, as the pore size in which protein is trapped is reduced, protein shows higher stability against denaturantβinduced unfolding. On the theoretical side, after reviewing our previous study of the confinement effects on the equilibrium and dynamic properties of protein using a minimalist (twoβdimensional lattice, Monte Carlo, Brownian dynamics) model, we have extended the model so that the effects of macromolecular crowding on such properties can be studied. Our simulations show that both folding and unfolding times increase with the number of crowders in solution, however, the equilibrium constant is affected such that the equilibrium is shifted towards the folded state. Furthermore, our results show that, for a fixed number of crowders as the size of crowder (or excluded volume) increases, the average size of protein at equilibrium decreases. Copyright Β© 2004 John Wiley & Sons, Ltd.
π SIMILAR VOLUMES
The concept of excluded volume and possible effects of excluded volume on the reactivity of macromolecules in highly volume-occupied or "crowded" media are introduced and briefly summarized. Theoretical and experimental studies of the effect of crowding on protein folding and unfolding, and on the e
Thioredoxin can be cleaved enzymatically into the two fragments (1-73) and (74-108) and chemically into two different ones (1-37) and . In this paper, the conformational properties of the short fragment (1-37) are reported and compared with those of the larger fragment (1-73). Using mainly circular