Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Native dynamics and allosteric responses in PTP1B probed by high-resolution HDX-MS

View through CrossRef
Abstract Protein tyrosine phosphatase 1B (PTP1B) is a validated therapeutic target for obesity, diabetes, and certain types of cancer. In particular, allosteric inhibitors hold potential for therapeutic use, but an incomplete understanding of conformational dynamics and allostery in this protein has hindered their development. Here, we interrogate solution dynamics and allosteric responses in PTP1B using high-resolution hydrogen-deuterium exchange mass spectrometry (HDX-MS), an emerging and powerful biophysical technique. Using HDX-MS, we obtain a detailed map of the solution dynamics of apo PTP1B, revealing several flexible loops interspersed among more constrained and rigid regions within the protein structure, as well as local regions that exchange faster than expected from their secondary structure and buriedness. We demonstrate that our HDX rate data obtained in solution adds value to predictions of dynamics derived from a pseudo-ensemble constructed from ∼200 crystal structures of PTP1B. Furthermore, we report HDX-MS maps for PTP1B with active-site vs. allosteric small-molecule inhibitors. These maps reveal distinct, dramatic, and widespread effects on protein dynamics relative to the apo form, including changes to dynamics in locations distal (>35 Å) from the respective ligand binding sites. These results help shed light on the allosteric nature of PTP1B and the surprisingly far-reaching consequences of inhibitor binding in this important protein. Overall, our work showcases the potential of HDX-MS for elucidating protein conformational dynamics and allosteric effects of small-molecule ligands, and highlights the potential of integrating HDX-MS alongside other complementary methods to guide the development of new therapeutics.
Title: Native dynamics and allosteric responses in PTP1B probed by high-resolution HDX-MS
Description:
Abstract Protein tyrosine phosphatase 1B (PTP1B) is a validated therapeutic target for obesity, diabetes, and certain types of cancer.
In particular, allosteric inhibitors hold potential for therapeutic use, but an incomplete understanding of conformational dynamics and allostery in this protein has hindered their development.
Here, we interrogate solution dynamics and allosteric responses in PTP1B using high-resolution hydrogen-deuterium exchange mass spectrometry (HDX-MS), an emerging and powerful biophysical technique.
Using HDX-MS, we obtain a detailed map of the solution dynamics of apo PTP1B, revealing several flexible loops interspersed among more constrained and rigid regions within the protein structure, as well as local regions that exchange faster than expected from their secondary structure and buriedness.
We demonstrate that our HDX rate data obtained in solution adds value to predictions of dynamics derived from a pseudo-ensemble constructed from ∼200 crystal structures of PTP1B.
Furthermore, we report HDX-MS maps for PTP1B with active-site vs.
allosteric small-molecule inhibitors.
These maps reveal distinct, dramatic, and widespread effects on protein dynamics relative to the apo form, including changes to dynamics in locations distal (>35 Å) from the respective ligand binding sites.
These results help shed light on the allosteric nature of PTP1B and the surprisingly far-reaching consequences of inhibitor binding in this important protein.
Overall, our work showcases the potential of HDX-MS for elucidating protein conformational dynamics and allosteric effects of small-molecule ligands, and highlights the potential of integrating HDX-MS alongside other complementary methods to guide the development of new therapeutics.

Related Results

<b>Myeloid cell protein tyrosine phosphatase 1B (PTP1B) drives retinal neurodegeneration in diabetic mice</b>
<b>Myeloid cell protein tyrosine phosphatase 1B (PTP1B) drives retinal neurodegeneration in diabetic mice</b>
<p dir="ltr"><a href="" target="_blank">Diabetic retinopathy (DR) is the leading cause of vision loss in the working age population with public health economic implicat...
Cyclic ion mobility for hydrogen/deuterium exchange-mass spectrometry applications
Cyclic ion mobility for hydrogen/deuterium exchange-mass spectrometry applications
Hydrogen/deuterium exchange-mass spectrometry (HDX-MS) has emerged as a powerful tool to probe protein dynamics. As a bottom-up technique, HDX-MS provides information at peptide-le...
Impacts of man-made structures on marine biodiversity and species status - native & non-native species
Impacts of man-made structures on marine biodiversity and species status - native & non-native species
<p>Coastal environments are exposed to anthropogenic activities such as frequent marine traffic and restructuring, i.e., addition, removal or replacing with man-made structur...
Review on allosteric modulators of dopamine receptors so far
Review on allosteric modulators of dopamine receptors so far
AbstractBackgroundContemporary research is predominantly directed towards allosteric modulators, a class of compounds designed to interact with specific sites distinct from the ort...
High-resolution double vision of the archetypal protein tyrosine phosphatase
High-resolution double vision of the archetypal protein tyrosine phosphatase
Abstract Protein tyrosine phosphatase 1B (PTP1B) plays important roles in cellular homeostasis and is a highly validated therapeutic target for multiple human ailme...
Studi In Silico Derivat Mangiferin dari Mangga sebagai Inhibisi Protein Tirosin Fosfatase 1B
Studi In Silico Derivat Mangiferin dari Mangga sebagai Inhibisi Protein Tirosin Fosfatase 1B
Diabetes melitus merupakan gangguan metabolik kronis yang ditandai dengan meningkatnya kadar glukosa darah (hiperglikemia) akibat gangguan sekresi, kerja, atau keduanya pada hormon...
Association of PTP1B with Outcomes of Breast Cancer Patients who Underwent Neoadjuvant Chemotherapy
Association of PTP1B with Outcomes of Breast Cancer Patients who Underwent Neoadjuvant Chemotherapy
PTP1B is involved in the oncogenesis of breast cancer. In addition, neoadjuvant therapy has been widely used in breast cancer; thus, a measurement to assess survival improvement co...

Back to Top