We use cookies to understand how you use our site and to improve your experience. This includes personalizing content and advertising. To learn more, click here. By continuing to use our site, you accept our use of cookies. Cookie Policy.

Features Partner Sites Information LinkXpress hp
Sign In
Advertise with Us
ZeptoMetrix an Antylia scientific company

Download Mobile App




Nuclear Magnetic Resonance Technology Aids in Drug Design

By LabMedica International staff writers
Posted on 16 Jun 2010
Scientists are using nuclear magnetic resonance (NMR) to help in the drug design field, providing insights into the dynamic flexibility of drugs and their targets.

The research, conducted by a team of researchers led by Dr. More...
Jeffrey Peng, assistant professor of chemistry and biochemistry at the University of Notre Dame (Notre Dame, IN, USA), was published April 28, 2010, in the Journal of the American Chemical Society. The research contributes to the growing awareness given toward the shape-shifting movement of molecules, a characteristic that potentially could help drug designers overcome issues of resistance, transportation of drugs to targets, and oral bioavailability.

"The new focus is that it's not enough just to look at the protein motion,” Dr. Peng said. "Of course, we've studied protein motions for some time, as many disease-related proteins are flexible. But we've also realized that in order to impact drug discovery, we also have to look at the candidate drug molecule that is being designed, that is, the ligand. It can move too.”

Drug design involves iterative changes of a ligand to optimize its drug-like properties, which include, among other issues, the ability to cross biologic membranes and bind specifically to a drug-target, typically a protein. The rules for doing this are well established for rigid ligands, but much less so for flexible ligands, which turn out to be common starting points for many drug-targets.

"Understanding that lets us predict how flexibility can affect drug-like properties, and how that flexibility should be manipulated in drug design is still elusive,” Dr. Peng said. "We need experimental methods that can tell us, systematically, how architectural changes in the candidate drug molecule can change its flexibility relevant for drug-like properties. These methods would benefit not just one particular kind of disease but basically drug design in general,” including therapies for cancer, AIDS, and methicillin-resistant Staphylococcus aureus (MRSA).

"The paper is a beginning of how to systematically understand how we should make ligand molecules, candidate drug molecules, floppy or not floppy, in order to best interfere with the target protein. For example, we can test the idea that some residual ‘floppiness' in a drug may help it co-adapt with a protein target site that ‘morphs' over time, on account of drug-resistant mutations. We can also study how drug floppiness can affect its ability to cross biological membranes and reach its protein target.”

Dr. Peng reported that the study of flexibility-activity relationships (FARs) adds another dimension to the longstanding structure-activity relationships (SARs) that scientists have studied. Addressing the dynamism of both the target molecule and the drug molecule can provide important resources for drug designers. "If you could know, atom by atom, which parts have to move and which do not have to move to bind to a target protein, that's information a chemist can use,” he stated. "They can change the ligand as chemists do, repeat the activity assay, and see if it has improved.”

Related Links:

University of Notre Dame




Platinum Member
Xylazine Immunoassay Test
Xylazine ELISA
Verification Panels for Assay Development & QC
Seroconversion Panels
POCT Fluorescent Immunoassay Analyzer
FIA Go
Gold Member
Blood Glucose Reference Analyzer
Nova Primary
Read the full article by registering today, it's FREE! It's Free!
Register now for FREE to LabMedica.com and get access to news and events that shape the world of Clinical Laboratory Medicine.
  • Free digital version edition of LabMedica International sent by email on regular basis
  • Free print version of LabMedica International magazine (available only outside USA and Canada).
  • Free and unlimited access to back issues of LabMedica International in digital format
  • Free LabMedica International Newsletter sent every week containing the latest news
  • Free breaking news sent via email
  • Free access to Events Calendar
  • Free access to LinkXpress new product services
  • REGISTRATION IS FREE AND EASY!
Click here to Register








Channels

Clinical Chemistry

view channel
Image: QIP-MS could predict and detect myeloma relapse earlier compared to currently used techniques (Photo courtesy of Adobe Stock)

Mass Spectrometry-Based Monitoring Technique to Predict and Identify Early Myeloma Relapse

Myeloma, a type of cancer that affects the bone marrow, is currently incurable, though many patients can live for over 10 years after diagnosis. However, around 1 in 5 individuals with myeloma have a high-risk... Read more

Immunology

view channel
Image: The cancer stem cell test can accurately choose more effective treatments (Photo courtesy of University of Cincinnati)

Stem Cell Test Predicts Treatment Outcome for Patients with Platinum-Resistant Ovarian Cancer

Epithelial ovarian cancer frequently responds to chemotherapy initially, but eventually, the tumor develops resistance to the therapy, leading to regrowth. This resistance is partially due to the activation... Read more

Technology

view channel
Image: Ziyang Wang and Shengxi Huang have developed a tool that enables precise insights into viral proteins and brain disease markers (Photo courtesy of Jeff Fitlow/Rice University)

Light Signature Algorithm to Enable Faster and More Precise Medical Diagnoses

Every material or molecule interacts with light in a unique way, creating a distinct pattern, much like a fingerprint. Optical spectroscopy, which involves shining a laser on a material and observing how... Read more

Industry

view channel
Image: The collaboration aims to leverage Oxford Nanopore\'s sequencing platform and Cepheid\'s GeneXpert system to advance the field of sequencing for infectious diseases (Photo courtesy of Cepheid)

Cepheid and Oxford Nanopore Technologies Partner on Advancing Automated Sequencing-Based Solutions

Cepheid (Sunnyvale, CA, USA), a leading molecular diagnostics company, and Oxford Nanopore Technologies (Oxford, UK), the company behind a new generation of sequencing-based molecular analysis technologies,... Read more
Copyright © 2000-2026 Globetech Media. All rights reserved.