Javascript must be enabled to continue!
Modeling the effect of 3 missense AGXT mutations on dimerization of the AGT enzyme in primary hyperoxaluria type 1
View through CrossRef
Abstract
Introduction: Mutations of the AGXT gene encoding the alanine:glyoxylate aminotransferase liver enzyme (AGT) cause primary hyperoxaluria type 1 (PH1). Here we report a molecular modeling study of selected missense AGXT mutations: the common Gly170Arg and the recently described Gly47Arg and Ser81Leu variants, predicted to be pathogenic using standard criteria.
Methods: Taking advantage of the refined 3D structure of AGT, we computed the dimerization energy of the wild-type and mutated proteins.
Results: Molecular modeling predicted that Gly47Arg affects dimerization with a similar effect to that shown previously for Gly170Arg through classical biochemical approaches. In contrast, no effect on dimerization was predicted for Ser81Leu. Therefore, this probably demonstrates pathogenic properties via a different mechanism, similar to that described for the adjacent Gly82Glu mutation that affects pyridoxine binding.
Conclusion: This study shows that the molecular modeling approach can contribute to evaluating the pathogenicity of some missense variants that affect dimerization. However, in silico studies – aimed to assess the relationship between structural change and biological effects – require the integrated use of more than 1 tool.
Title: Modeling the effect of 3 missense AGXT mutations on dimerization of the AGT enzyme in primary hyperoxaluria type 1
Description:
Abstract
Introduction: Mutations of the AGXT gene encoding the alanine:glyoxylate aminotransferase liver enzyme (AGT) cause primary hyperoxaluria type 1 (PH1).
Here we report a molecular modeling study of selected missense AGXT mutations: the common Gly170Arg and the recently described Gly47Arg and Ser81Leu variants, predicted to be pathogenic using standard criteria.
Methods: Taking advantage of the refined 3D structure of AGT, we computed the dimerization energy of the wild-type and mutated proteins.
Results: Molecular modeling predicted that Gly47Arg affects dimerization with a similar effect to that shown previously for Gly170Arg through classical biochemical approaches.
In contrast, no effect on dimerization was predicted for Ser81Leu.
Therefore, this probably demonstrates pathogenic properties via a different mechanism, similar to that described for the adjacent Gly82Glu mutation that affects pyridoxine binding.
Conclusion: This study shows that the molecular modeling approach can contribute to evaluating the pathogenicity of some missense variants that affect dimerization.
However, in silico studies – aimed to assess the relationship between structural change and biological effects – require the integrated use of more than 1 tool.
Related Results
Molecular Analysis of the AGXT Gene Detected a Missense and Pathogenic Variant Associated with Primary Hyperoxaluria Type 1; a Case Study
Molecular Analysis of the AGXT Gene Detected a Missense and Pathogenic Variant Associated with Primary Hyperoxaluria Type 1; a Case Study
Abstract
Background
Primary Hyperoxaluria Type 1 (PH1) is an autosomal recessive genetic disorder triggered by a mutation in the alanine glyoxylate aminotransferase (AGXT) ...
Postmenopausal Hormone Therapy Is Associated With Atherosclerosis Progression in Women With Abnormal Glucose Tolerance
Postmenopausal Hormone Therapy Is Associated With Atherosclerosis Progression in Women With Abnormal Glucose Tolerance
Background—
Abnormal glucose tolerance (AGT; diabetes or impaired glucose tolerance) is associated with increased risk of cardiovascular disease, especiall...
Abstract P429: Stronger Association of Angiotensinogen with Mortality than Renin or Lactate in Critical Illness
Abstract P429: Stronger Association of Angiotensinogen with Mortality than Renin or Lactate in Critical Illness
Introduction: Sepsis and septic shock remain global healthcare issues associated with high mortality rates affecting millions every year despite best care efforts. Activation of th...
Angiotensinogen - A Potential Diagnostic and Prognostic Candidate Gene for Adenocarcinomas of Rectum and Stomach
Angiotensinogen - A Potential Diagnostic and Prognostic Candidate Gene for Adenocarcinomas of Rectum and Stomach
<p>The Angiotensinogen (AGT) gene encodes for angiotensinogen protein that mainly regulates blood pressure and maintains the fluid and salt balance in the body. AGT expressio...
Heritability of Angiotensin-Converting Enzyme and Angiotensinogen
Heritability of Angiotensin-Converting Enzyme and Angiotensinogen
Abstract
—Angiotensinogen (AGT) and angiotensin I–converting enzyme (ACE) are heritable traits, but whether the environmental context influences heritability has not...
High Resolution Melt Analysis for Rapid and Cost-Effective Screening of TP53 Mutations in Patients with Myeloid Malignancies
High Resolution Melt Analysis for Rapid and Cost-Effective Screening of TP53 Mutations in Patients with Myeloid Malignancies
Abstract
Background
Recent reports have highlighted an adverse impact of TP53 mutations on the prognosis of patients with myeloid malignancies. TP53 m...
STIM1 transmembrane helix dimerization captured by AI-guided transition path sampling
STIM1 transmembrane helix dimerization captured by AI-guided transition path sampling
Abstract
STIM1 is a Ca
2+
-sensing protein in the endoplasmic reticulum (ER) membrane. The depletion of ER Ca...
Dynamics of Mutations in Patients with ET Treated with Imetelstat
Dynamics of Mutations in Patients with ET Treated with Imetelstat
Abstract
Background: Imetelstat, a first in class specific telomerase inhibitor, induced hematologic responses in all patients (pts) with essential thrombocythemia (...

