Makale detayı · 2001
Coordination topology and stability for the native and binding conformers of chymotrypsin inhibitor 2
Dergi
Proteins: Structure, Function, and GeneticsISSN 0887-3585
ISSN kaydı başka bir dergiye işaret ediyor; ad YÖKSİS kaydından.
- Yıl
- 2001
- Tür
- article
Veri kaynağı ayrımı
- YÖKSİS YÖKSİS makale kaydı
- YÖKSİS dergi adı Proteins: Structure, Function, and Genetics
- Katalog eşleşmesi (ISSN) Proteins: Structure, Function and Genetics
- OpenAlex OpenAlex zenginleştirmesi (özet, atıf, konular)
Özet
OpenAlex · İngilizce
We demonstrate that the stabilization of the binding region is accomplished at the expense of a loss in the stability of the rest of the protein. A novel molecular mechanics (MM) approach is introduced to distinguish residue stabilities of proteins in a given conformation. As an example, the relative stabilities of folded chymotrypsin inhibitor 2 (CI2) in unbound form, and CI2 in complex with subtilisin novo is investigated. The conformation of the molecule in the two states is almost identical, with an approximately 0.6-A root-mean-square deviation (RMSD) of the Calpha atoms. On binding, the packing density changes only at the binding loop. However, residue fluctuations in the rest of the protein are greatly altered solely due to those contacts, indicating the effective propagation of perturbation and the presence of remotely controlling residues. To quantify the interplay between packing density, packing order, residue fluctuations, and residue stability, we adopt an MM approach whereby small displacements are inserted at selected residues, followed by energy minimization; the displacement of each residue in response to such perturbations are organized in a perturbation-response matrix L. We define residue stability lambda(i) = summation operator((j)L(ij))/ summation operator((j) L(ji)) as the ratio of the amount of change to which the residue is amenable, to the ability of a given residue to induce change. We then define the free energy associated with residue stability, DeltaG(lambda) = -RT ln lambda. DeltaG(lambda) intrinsically selects the residues that are in the folding core. Upon complexation, the binding loop becomes more resistant to perturbation, in contrast to the alpha-helix that favors change. Although the two forms of CI2 are structurally similar, residue fluctuations differ vastly, and the stability of many residues is altered upon binding. The decrease in entropy introduced by binding is thus compensated by these changes.
Konular
Atıflar
OpenAlex cited_by_count. WoS veya Scopus atıf sayısı değildir; o kaynaklar için ayrı kolon yoktur.
37 atıf
OpenAlex cited_by_count (önbellek / veritabanı)
Yerel katalogda bu makaleye atıf yapan 34 yayın (OpenAlex referans eşleşmesi; tam dünya listesi değildir).
- Small-world communication of residues and significance for protein dynamics 2004
- Small-world communication of residues and significance for protein dynamics 2004
- Perturbation-Response Scanning Reveals Ligand Entry-Exit Mechanisms of Ferric Binding Protein 2009
- Manipulation of Conformational Change in Proteins by Single-Residue Perturbations 2010
- Screened Nonbonded Interactions in Native Proteins Manipulate Optimal Paths for Robust Residue Communication 2007
- Network-Based Models as Tools Hinting at Nonevident Protein Functionality 2012
- Network-Based Models as Tools Hinting at Nonevident Protein Functionality 2012
- Cooperative fluctuations of unliganded and substrate bound HIV 1 protease A structure based analysis on a variety of conformations from crystallography and molecular dynamics simulations 2003
- Relaxation Kinetics and the Glassiness of Proteins: The Case of Bovine Pancreatic Trypsin Inhibitor 2002
- Subtle pH differences trigger single residue motions for moderating conformations of calmodulin 2011