PubMed Health⌕ Search

PubMed · 10668399

Protein folding using contact maps.

Abstract

We discuss the problem of representations of protein structure and give the definition of contact maps. We present a method to obtain a three-dimensional polypeptide conformation from a contact map. We also explain how to deal with the case of nonphysical contact maps. We describe a stochastic method to perform dynamics in contact map space. We explain how the motion is restricted to physical regions of the space. First, we introduce the exact free energy of a contact map and discuss two simple approximations to it. Second, we present a method to derive energy parameters based on perception learning. We prove in an extensive number of situations that the pairwise contact approximation both when alone and when supplemented with a hydrophobic term is unsuitable for stabilizing proteins' native states.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

M Vendruscolo, E Domany. 2000. Protein folding using contact maps.. https://doi.org/10.1016/s0083-6729(00)58025-x

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Ultra-low dose aprotinin effects on reducing the need for blood transfusion in cardiac surgery.

OBJECTIVE: To assess the effects of ultra-low dose one million kallikrein inhibitor units (KIU) of aprotinin on bleeding and the need for transfusion after cardiac surgery. METHODS: We carried out this randomized clinical trial on 162 cardiac surgery patients in Shahid Madani Hospital, Tabriz, Iran from April 2004 to December 2005. The patients were randomly divided into 2 groups of 81 individuals. In the aprotinin group, 0.5 million KIU infused before and 0.5 million KIU during cardiopulmonary bypass. In the placebo group, 100 ml normal saline was infused as above. The need to use fresh frozen plasma (FFP), packed red blood cells (PRBCs) transfusion during, after operation, the rate of chest tubes drainage at 6, 12 and 24 hours after surgery were measured in 2 groups. RESULTS: Chest tubes drainage at 6 hours after surgery was 190 +/- 24 ml in the aprotinin group and 266 +/- 33 ml in the placebo group (p=0.066). The amount of bleeding at 12 and 24 hours was significantly different between 2 groups (p=0.048, p=0.009). The frequency of blood products transfusion in the aprotinin group was 68% and in the placebo group was 75% (p=0.02). The number of PRBCs and FFP units transfused were significantly lower in the aprotinin group (p=0.000, p=0.005). Total amount of blood and products transfusion in the aprotinin group was 2.56 +/- 0.27 units and in placebo group it was 4.37 +/- 0.27 units (p=0.0001). CONCLUSION: Results indicate that the use of one million KIU of aprotinin in cardiac surgery is effective in reducing postoperative bleeding and transfusion requirements.

Aprotinin↗

Aprotinin; friend or foe? A review of recent medical literature.

Recent articles published in peer review journals have questioned the safety of using aprotinin in patients having heart surgery. Also, evidence has been published to suggest an increase in renal events in patients given aprotinin when compared to those where tranexamic acid was used. The present review will focus principally on the first of these articles in relation to previously published data and experience.

Aprotinin↗