Publications by authors named "Terry D Butters"

Article Synopsis
  • - Mucopolysaccharidosis type IIIB is a serious neurological disorder caused by insufficient levels of the enzyme NAGLU, leading to harmful buildup of heparan sulfate in the body.
  • - The study investigated a pharmacological chaperone strategy aimed at improving the activity of NAGLU in cells from affected patients, utilizing structures of existing inhibitors to develop new compounds.
  • - Among the 17 new iminosugar C-glycosides created, one non-functionalized β-homoiminosugar unexpectedly emerged as the most effective, enhancing mutant NAGLU activity by 2.4 times at optimal concentration.
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  • Mammalian N-linked glycosylation is essential for the proper functioning and processing of glycoproteins, involving a series of modifications in the endoplasmic reticulum and Golgi apparatus.
  • MANEA is a key enzyme that trims N-linked glycans and enables certain glycoproteins to bypass standard trimming processes in the ER.
  • The study reveals the structure of MANEA and how it interacts with inhibitors, highlighting its potential for therapeutic applications against diseases like cancer and viral infections by disrupting glycosylation pathways.
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N-acetylglucosaminyltransferase III (GnT-III) is known to catalyze N-glycan "bisection" and thereby modulate the formation of highly branched complex structures within the Golgi apparatus. While active, it inhibits the action of other GlcNAc transferases such as GnT-IV and GnT-V. Moreover, GnT-III is considered as an inhibitor of the metastatic potential of cancer cells both in vitro and in vivo.

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Article Synopsis
  • - Iminosugars can inhibit viruses by blocking specific enzymes needed for their replication, making them promising antiviral agents against various viral infections.
  • - These compounds are already approved for treating conditions like diabetes and Gaucher's disease, indicating they are generally safe for human use.
  • - The study highlights a new iminosugar called UV-12, which shows effectiveness against dengue and influenza in animal models and has favorable drug-like properties, warranting further investigation.
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  • * Research shows that GSL synthesis is crucial for osteoclast activation in MM, and myeloma cells produce GSLs that enhance this activation, particularly GM3.
  • * Inhibiting GSL synthesis with drugs like NB-DNJ can prevent OC development, reduce bone damage in MM cases, and shows promise for treating osteolytic bone diseases.
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Secondary metabolites and synthetic iminosugars that structurally resemble monosaccharides are potent inhibitors of α-glucosidase activity. The enzyme is core in cleaving sucrose in phloem feeding insects and it also plays a crucial role of reducing osmotic stress via the formation of oligosaccharides. Inhibition of hydrolysis by iminosugars should result in nutritional deficiencies and/or disruption of normal osmoregulation.

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A panel of 1-deoxynojirimycin (DNJ) N-linked peptides were synthesized. Their IC50 values were measured in vitro against α-glucosidases I and II and were found to be in the micromolar range for both isozymes, and better than that of the iminosugar NB-DNJ (miglustat, 3) against α-glucosidase II. Cell-based studies revealed that although the free iminosugar 3 is most effective at disrupting N-linked glycan processing for short-term incubations (one day), when the cell-based studies were extended to three days, the DNJ N-linked tetrapeptide KDEL, which is an endoplasmic reticulum (ER)-retaining sequence, performed far better than 3.

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Nitazoxanide (NTZ) inhibits influenza, Japanese encephalitis, hepatitis B and hepatitis C virus replication but effects on the replication of other members of the Flaviviridae family has yet to be defined. The pestivirus bovine viral diarrhoea virus (BVDV) is a surrogate model for HCV infection and NTZ induced PKR and eIF2α phosphorylation in both uninfected and BVDV-infected cells. This led to the observation that NTZ depletes ATP-sensitive intracellular Ca(2+) stores.

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The enantiomers of XYLNAc (2-N-acetylamino-1,2,4-trideoxy-1,4-iminoxylitol) are prepared from the enantiomers of glucuronolactone; the synthesis of the enantiomers of LYXNAc (2-N-acetylamino-1,2,4-trideoxy-1,4-iminolyxitol) from an L-arabinono-δ-lactone and a D-ribono-δ-lactone is reported. A comparison is made of the inhibition of β-N-acetylhexosaminidases (HexNAcases) and α-N-acetylgalactosaminidase (α-GalNAcase) by 8 stereoisomeric 2-N-acetylamino-1,2,4-trideoxy-1,4-iminopentitols; their N-benzyl derivatives are better inhibitors than the parent compounds. Both XYLNAc and LABNAc are potent inhibitors against HexNAcases.

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All 16 stereoisomeric N-methyl 5-(hydroxymethyl)-3,4-dihydroxyproline amides have been synthesized from lactones accessible from the enantiomers of glucuronolactone. Nine stereoisomers, including all eight with a (3R)-hydroxyl configuration, are low to submicromolar inhibitors of β-N-acetylhexosaminidases. A structural correlation between the proline amides is found with the ADMDP-acetamide analogues bearing an acetamidomethylpyrrolidine motif.

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A series of 18 mono- to 14-valent iminosugars with different ligands, scaffolds, and alkyl spacer lengths have been synthesized and evaluated as inhibitors and pharmacological chaperones of β-glucocerebrosidase (GCase). Small but significant multivalent effects in GCase inhibition have been observed for two iminosugar clusters. Our study provides strong confirmation that compounds that display the best affinity for GCase are not necessarily the best chaperones.

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Article Synopsis
  • GNE is a key enzyme involved in producing sialic acid, which is important for glycosylation, and mutations in GNE cause GNE myopathy, a rare neuromuscular disorder.
  • Research using various models, including patient cells and mice, showed that both neutral and sialylated glycosphingolipids (GSLs) were elevated in GNE myopathy.
  • Supplementing with N-acetylmannosamine (ManNAc) reduced GSL levels in affected cells, suggesting a connection between sialic acid synthesis disruption and increased GSLs, indicating potential for GSLs as biomarkers in sialic acid metabolism disorders.
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Cystic fibrosis is caused by a mutation in the gene for the cystic fibrosis transmembrane conductance regulator (CFTR) protein. N-butyl 1-deoxynojirimycin (N-Bu DNJ), a clinical candidate for the treatment of cystic fibrosis, is able to act as a CFTR corrector by overcoming the processing defect of the mutant protein. To explore the potential of multivalency on CFTR correction activity, a library of twelve DNJ click clusters with valencies ranging from 3 to 14 were synthesized.

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Crystal structures were obtained for the two C2 epimeric azido-γ-lactones 2-azido-2-deoxy-3,5:6,7-di-O-isopropylidene-d-glycero-d-ido-heptono-1,4-lactone and 2-azido-2-deoxy-3,5:6,7-di-O-isopropylidene-d-glycero-d-gulo-heptono-1,4-lactone prepared from kinetic and thermodynamic azide displacements of a triflate derived from d-glucoheptonolactone. Azido-γ-lactones are very useful intermediates in the synthesis of iminosugars and polyhydroxylated amino acids. In this study two epimeric azido-heptitols allow biotechnological transformations via Izumoring techniques to 8 of the 16 possible homonojirimycin analogues, 5 of which were isolated pure because of the lack of stereoselectivity of the final reductive amination.

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Article Synopsis
  • The Ho crossed aldol condensation technique enables the synthesis of branched iminosugars, including enantiomers of isoDMDP, isoDGDP, and isoDAB, which are compared to their linear natural product counterparts.
  • L-IsoDMDP is synthesized in 11 steps with a 45% yield from d-lyxonolactone and is identified as a strong inhibitor of gut disaccharidases, outperforming the current diabetes drug miglitol in managing hyperglycemia.
  • The ability of L-isoDMDP to partially restore function in defective CFTR cells suggests its potential in treating cystic fibrosis, with a comparison to other treatments like miglustat and isoLAB.
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Article Synopsis
  • Host α-glucosidases I and II are crucial for the proper folding of viral proteins, and their inhibition causes misfolding and decreased virus release.
  • CM-10-18, an imino sugar inhibitor, has been shown to protect against dengue virus lethality in mice.
  • The study identifies three CM-10-18 derivatives with enhanced antiviral effects against hemorrhagic fever viruses, showing promise as potential treatments for diseases like Marburg and Ebola.
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  • Endoplasmic reticulum-associated degradation (ERAD) is a crucial process that removes misfolded proteins from the endoplasmic reticulum for breakdown by the ubiquitin/proteasome system.
  • Researchers studied free oligosaccharides (FOS) from glycoproteins undergoing ERAD to gain insights into the overall mechanisms involved, rather than just focusing on specific model proteins.
  • Their findings suggest a new pathway for degrading glycoproteins that have not passed quality control, characterized by unique FOS types produced in the ER, which differ from commonly recognized FOS produced through traditional misfolding routes.
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The formation from D-glucose of both enantiomers of 2,4-dideoxy-2,4-iminoribonic acid is the first chemical synthesis of unprotected 3-hydroxyazetidine carboxylic acids. The long-term stability of 3-hydroxyazetidine amides is established at acidic and neutral pH and implies their value as non-proteinogenic amino acid components of peptides, providing medicinal chemists with a new class of peptide isosteres. The structure of N,3-O-dibenzyl-2,4-dideoxy-2,4-imino-D-ribonic acid was established by X-ray crystallographic analysis.

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Article Synopsis
  • - The study assessed the effectiveness of the iminosugar drug UV-4 in protecting AG129 mice from severe dengue virus (DENV) infections that resemble dengue hemorrhagic fever/dengue shock syndrome.
  • - UV-4 demonstrated significant benefits, including reduced mortality, lower levels of the virus in the bloodstream and vital tissues, and diminished inflammatory responses without affecting the production of anti-DENV antibodies.
  • - These promising findings support further development of UV-4 as a targeted antiviral treatment for dengue, leading towards phase I human clinical trials.
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The efficient scalable syntheses of 2-acetamido-1,2-dideoxy-D-galacto-nojirimycin (DGJNAc) and 2-acetamido-1,2-dideoxy-D-gluco-nojirimycin (DNJNAc) from D-glucuronolactone, as well as of their enantiomers from L-glucuronolactone, are reported. The evaluation of both enantiomers of DNJNAc and DGJNAc, along with their N-alkyl derivatives, as glycosidase inhibitors showed that DGJNAc and its N-alkyl derivatives were all inhibitors of α-GalNAcase but that none of the epimeric DNJNAc derivatives inhibited this enzyme. In contrast, both DGJNAc and DNJNAc, as well as their alkyl derivatives, were potent inhibitors of β-GlcNAcases and β-GalNAcases.

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Article Synopsis
  • * It explains that while glucosidases I and II are primarily responsible for this process, endo-α-mannosidase can act as a backup in certain situations, especially when glucosidases are inhibited.
  • * The research found that in bovine cells, the endomannosidase has a limited substrate range and is genetically regulated, suggesting it is adapted to function effectively even when other enzymes have reduced activity.
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Amino-myo-inositol derivatives have been found to be potent inhibitors of glucocerebrosidase (GCase), the β-glucosidase enzyme deficient in Gaucher disease (GD). When tested using lymphoblasts derived from patients with GD homozygous for N370S or L444P mutations, the compounds enhanced GCase activity at very low concentrations. The most potent inhibitor, (1R,2S,3R,4S,5S,6R)-5-(nonylamino)-6-(nonyloxy)cyclohexane-1,2,3,4-tetraol had a K(i) of 1 nM using isolated enzyme and an IC(50) of 4.

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  • The study introduces a new method for enhancing the accuracy of analyzing oligosaccharide mixtures using HILIC by incorporating an internal standard, specifically 4-aminobenzoic acid ethyl ester (4-ABEE).
  • This internal standard allows for more reliable calculations of glucose unit (GU) values by co-injecting 4-ABEE with 2-aminobenzoic acid (2-AA)-labelled oligosaccharides, using both UV absorption and fluorescence detection.
  • The innovative approach improves the consistency of GU values by minimizing the impact of gradient variations during the separation process.
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A series of N-substituted ε-hexonolactams have been designed and prepared by a concise route with a tandem ring-expansion reaction as the key step. Some of the N-substituted ε-hexonolactams show better enhancements to N370S mutant β-glucocerebrosidase activity than NB-DNJ and NN-DNJ. Both the experimental results and computational studies highlight the importance of the carbonyl group for stabilizing protein folds in the mutant enzyme.

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