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1.
Nat Commun ; 15(1): 1326, 2024 Feb 13.
Article in English | MEDLINE | ID: mdl-38351061

ABSTRACT

Heparan sulfate (HS) polysaccharides are major constituents of the extracellular matrix, which are involved in myriad structural and signaling processes. Mature HS polysaccharides contain complex, non-templated patterns of sulfation and epimerization, which mediate interactions with diverse protein partners. Complex HS modifications form around initial clusters of glucosamine-N-sulfate (GlcNS) on nascent polysaccharide chains, but the mechanistic basis underpinning incorporation of GlcNS itself into HS remains unclear. Here, we determine cryo-electron microscopy structures of human N-deacetylase-N-sulfotransferase (NDST)1, the bifunctional enzyme primarily responsible for initial GlcNS modification of HS. Our structures reveal the architecture of both NDST1 deacetylase and sulfotransferase catalytic domains, alongside a non-catalytic N-terminal domain. The two catalytic domains of NDST1 adopt a distinct back-to-back topology that limits direct cooperativity. Binding analyses, aided by activity-modulating nanobodies, suggest that anchoring of the substrate at the sulfotransferase domain initiates the NDST1 catalytic cycle, providing a plausible mechanism for cooperativity despite spatial domain separation. Our data shed light on key determinants of NDST1 activity, and describe tools to probe NDST1 function in vitro and in vivo.


Subject(s)
Heparitin Sulfate , Sulfotransferases , Humans , Cryoelectron Microscopy , Heparitin Sulfate/metabolism , Catalytic Domain , Sulfotransferases/metabolism , Extracellular Matrix/metabolism
2.
Chembiochem ; 25(1): e202300625, 2024 01 02.
Article in English | MEDLINE | ID: mdl-37830893

ABSTRACT

As the world moves towards net-zero carbon emissions, the development of sustainable chemical manufacturing processes is essential. Within manufacturing, purification by distillation is often used, however this process is energy intensive and methods that could obviate or reduce its use are desirable. Developed herein is an alternative, oxidative biocatalytic approach that enables purification of alkyl monoglucosides (essential bio-based surfactant components). Implementing an immobilised engineered alcohol oxidase, a long-chain alcohol by-product derived from alkyl monoglucoside synthesis (normally removed by distillation) is selectively oxidised to an aldehyde, conjugated to an amine resin and then removed by simple filtration. This affords recovery of the purified alkyl monoglucoside. The approach lays a blueprint for further development of sustainable alkylglycoside purification using biocatalysis and, importantly, for refining other important chemical feedstocks that currently rely on distillation.


Subject(s)
Alcohols , Aldehydes , Oxidation-Reduction , Biocatalysis
3.
RSC Chem Biol ; 4(11): 865-870, 2023 Nov 01.
Article in English | MEDLINE | ID: mdl-37920392

ABSTRACT

Upon undergoing mucoid conversion within the lungs of cystic fibrosis patients, the pathogenic bacterium Pseudomonas aeruginosa synthesises copious quantities of the virulence factor and exopolysaccharide alginate. The enzyme guanosine diphosphate mannose dehydrogenase (GMD) catalyses the rate-limiting step and irreversible formation of the alginate sugar nucleotide building block, guanosine diphosphate mannuronic acid. Since there is no corresponding enzyme in humans, strategies that could prevent its mechanism of action could open a pathway for new and selective inhibitors to disrupt bacterial alginate production. Using virtual screening, a library of 1447 compounds within the Known Drug Space parameters were evaluated against the GMD active site using the Glide, FRED and GOLD algorithms. Compound hit evaluation with recombinant GMD refined the panel of 40 potential hits to 6 compounds which reduced NADH production in a time-dependent manner; of which, an usnic acid derivative demonstrated inhibition six-fold stronger than a previously established sugar nucleotide inhibitor, with an IC50 value of 17 µM. Further analysis by covalent docking and mass spectrometry confirm a single site of GMD alkylation.

5.
Sci Total Environ ; 892: 164480, 2023 Sep 20.
Article in English | MEDLINE | ID: mdl-37263426

ABSTRACT

Whillans Subglacial Lake (SLW) lies beneath 801 m of ice in the lower portion of the Whillans Ice Stream (WIS) in West Antarctica and is part of an extensive and active subglacial drainage network. Here, the geochemical characterization of SLW rare earth elements (REE), trace elements (TE), free amino acids (FAA), and phenolic compounds (PC) measured in lakewater and sediment porewater are reported. The results show, on average, higher values of REEs in the lakewater than in the porewater, and clear changes in all REE concentrations and select redox sensitive trace element concentrations in porewaters at a depth of ~15 cm in the 38 cm lake sediment core. This is consistent with prior results on the lake sediment redox conditions based on gas chemistry and microbiological data. Low concentrations of vanillyl phenols were measured in the SLW water column with higher concentrations in porewater samples and their concentration profiles in the sediments may also reflect changing redox conditions in the sediments. Vanillin concentrations increased with depth in the sediments as oxygenation decreases, while the concentrations of vanillic acid, the more oxidized component, were higher in the more oxygenated surface sediments. Collectively these results indicate redox changes occurring with the upper 38 cm of sediment in SLW and provide support for the existence of a seawater source, already hypothesized, in the sediments below the lowest measured depth, and of a complex and dynamic geochemical system beneath the West Antarctic Ice Sheet. Our results are the first to detail geochemical properties from an Antarctic subglacial environment using direct sampling technology. Due to their isolation from the wider environment, subglacial lakes represent one of our planets last pristine environments that provide habitats for microbial life and natural biogeochemical cycles but also impact the basal hydrology and can cause ice flow variations.


Subject(s)
Metals, Rare Earth , Trace Elements , Lakes/chemistry , Trace Elements/analysis , Antarctic Regions , Metals, Rare Earth/analysis , Carbon
7.
Anal Methods ; 15(11): 1461-1469, 2023 03 16.
Article in English | MEDLINE | ID: mdl-36876452

ABSTRACT

The fine structure of heparan sulfate (HS), the glycosaminoglycan polysaccharide component of cell surface and extracellular matrix HS proteoglycans, coordinates the complex cell signalling processes that control homeostasis and drive development in multicellular animals. In addition, HS is involved in the infection of mammals by viruses, bacteria and parasites. The current detection limit for fluorescently labelled HS disaccharides (low femtomole; 10-15 mol), has effectively hampered investigations of HS composition in small, functionally-relevant populations of cells and tissues that may illuminate the structural requirements for infection and other biochemical processes. Here, an ultra-high sensitivity method is described that utilises a combination of reverse-phase HPLC, with tetraoctylammonium bromide (TOAB) as the ion-pairing reagent and laser-induced fluorescence detection of BODIPY-FL-labelled disaccharides. The method provides an unparalleled increase in the sensitivity of detection by ∼six orders of magnitude, enabling detection in the zeptomolar range (∼10-21 moles; <1000 labelled molecules). This facilitates determination of HS disaccharide compositional analysis from minute samples of selected tissues, as demonstrated by analysis of HS isolated from the midguts of Anopheles gambiae mosquitoes that was achieved without approaching the limit of detection.


Subject(s)
Culicidae , Disaccharides , Animals , Disaccharides/analysis , Disaccharides/chemistry , Chromatography, High Pressure Liquid/methods , Heparitin Sulfate/analysis , Heparitin Sulfate/chemistry , Mammals
8.
J Rural Health ; 39(4): 860-869, 2023 09.
Article in English | MEDLINE | ID: mdl-36988517

ABSTRACT

PURPOSE: Recognizing signs of psychological distress is a critical first step in assisting people who are struggling with poor mental health to access help. However, community-level factors that impact recognition and stigma are underexplored. The purpose of this study is to investigate the relationship between rurality, other community-level variables, and individual variables with regard to the recognition and stigma of anxiety. METHODS: We use a survey of US adults (N = 627), including a rural oversample, and a cloaked vignette approach. We assess the ability to identify anxiety and measure associated stigma. The analysis applies an ecological model in multinomial logistic regressions. FINDINGS: About half of the respondents recognize anxiety from a list of possibilities when provided with a vignette detailing common anxiety symptoms. Respondents living in rural areas are nearly twice as likely to correctly identify anxiety than nonrural respondents. About one-fifth of respondents agree with a statement designed to measure stigma: that exhibiting the symptoms is a sign of personal weakness. Respondents able to identify anxiety show less stigma. Respondents from counties with high mental health provider access were less likely to endorse the stigma statement. CONCLUSIONS: Rural areas seem poised to reduce the stigma associated with anxiety, because residents are more adept at identifying anxiety than people living elsewhere. Future work could focus on effective mechanisms for reducing stigma associated with anxiety in rural areas, and whether anxiety recognition and stigma are changing.


Subject(s)
Anxiety , Social Stigma , Adult , Humans , Anxiety/epidemiology , Mental Health , Surveys and Questionnaires , Rural Population
9.
ACS Cent Sci ; 9(3): 381-392, 2023 Mar 22.
Article in English | MEDLINE | ID: mdl-36968539

ABSTRACT

Heparin is a polydisperse, heterogeneous polysaccharide of the glycosaminoglycan (GAG) class that has found widespread clinical use as a potent anticoagulant and is classified as an essential medicine by the World Health Organization. The importance of rigorous monitoring and quality control of pharmaceutical heparin was highlighted in 2008, when the existing regulatory procedures failed to identify a life-threatening adulteration of pharmaceutical heparin with oversulfated chondroitin sulfate (OSCS). The subsequent contamination crisis resulted in the exploration of alternative approaches for which the use of multidimensional nuclear magnetic resonance (NMR) spectroscopy techniques and multivariate analysis emerged as the gold standard. This procedure is, however, technically demanding and requires access to expensive equipment. An alternative approach, utilizing attenuated total reflectance-Fourier transform infrared spectroscopy (ATR-FTIR) combined with multivariate analysis, has been developed. The method described enables the differentiation of diverse GAG samples, the classification of samples of distinct species provenance, and the detection of both established heparin contaminants and alien polysaccharides. This methodology has sensitivity comparable to that of NMR and can facilitate the rapid, cost-effective monitoring and analysis of pharmaceutical heparin. It is therefore suitable for future deployment throughout the supply chain.

10.
Carbohydr Res ; 525: 108747, 2023 Mar.
Article in English | MEDLINE | ID: mdl-36773398

ABSTRACT

The clinically important anticoagulant heparin, a member of the glycosaminoglycan family of carbohydrates that is extracted predominantly from porcine and bovine tissue sources, has previously been shown to inhibit the ß-site amyloid precursor protein cleaving enzyme 1 (BACE-1), a key drug target in Alzheimer's Disease. In addition, heparin has been shown to exert favourable bioactivities through a number of pathophysiological pathways involved in the disease processes of Alzheimer's Disease including inflammation, oxidative stress, tau phosphorylation and amyloid peptide generation. Despite the multi-target potential of heparin as a therapeutic option for Alzheimer's disease, the repurposing of this medically important biomolecule has to-date been precluded by its high anticoagulant potential. An alternative source to mammalian-derived glycosaminoglycans are those extracted from marine environments and these have been shown to display an expanded repertoire of sequence-space and heterogeneity compared to their mammalian counterparts. Furthermore, many marine-derived glycosaminoglycans appear to retain favourable bioactivities, whilst lacking the high anticoagulant potential of their mammalian counterparts. Here we describe a sulphated, marine-derived glycosaminoglycan extract from the Atlantic Sea Scallop, Placopecten magellanicus that displays high inhibitory potential against BACE-1 (IC50 = 4.8 µg.mL-1) combined with low anticoagulant activity; 25-fold less than that of heparin. This extract possesses a more favourable therapeutic profile compared to pharmaceutical heparin of mammalian provenance and is composed of a mixture of heparan sulphate (HS), with a high content of 6-sulphated N-acetyl glucosamine (64%), and chondroitin sulphate.


Subject(s)
Alzheimer Disease , Pectinidae , Animals , Cattle , Alzheimer Disease/drug therapy , Amyloid beta-Peptides , Amyloid beta-Protein Precursor/metabolism , Amyloid beta-Protein Precursor/therapeutic use , Anticoagulants/chemistry , Glycosaminoglycans/pharmacology , Heparin/pharmacology , Mammals/metabolism , Pectinidae/metabolism , Swine , Amyloid Precursor Protein Secretases
11.
ISME Commun ; 3(1): 8, 2023 Jan 30.
Article in English | MEDLINE | ID: mdl-36717625

ABSTRACT

Ice streams that flow into Ross Ice Shelf are underlain by water-saturated sediments, a dynamic hydrological system, and subglacial lakes that intermittently discharge water downstream across grounding zones of West Antarctic Ice Sheet (WAIS). A 2.06 m composite sediment profile was recently recovered from Mercer Subglacial Lake, a 15 m deep water cavity beneath a 1087 m thick portion of the Mercer Ice Stream. We examined microbial abundances, used 16S rRNA gene amplicon sequencing to assess community structures, and characterized extracellular polymeric substances (EPS) associated with distinct lithologic units in the sediments. Bacterial and archaeal communities in the surficial sediments are more abundant and diverse, with significantly different compositions from those found deeper in the sediment column. The most abundant taxa are related to chemolithoautotrophs capable of oxidizing reduced nitrogen, sulfur, and iron compounds with oxygen, nitrate, or iron. Concentrations of dissolved methane and total organic carbon together with water content in the sediments are the strongest predictors of taxon and community composition. δ¹³C values for EPS (-25 to -30‰) are consistent with the primary source of carbon for biosynthesis originating from legacy marine organic matter. Comparison of communities to those in lake sediments under an adjacent ice stream (Whillans Subglacial Lake) and near its grounding zone provide seminal evidence for a subglacial metacommunity that is biogeochemically and evolutionarily linked through ice sheet dynamics and the transport of microbes, water, and sediments beneath WAIS.

12.
BMC Infect Dis ; 23(1): 51, 2023 Jan 24.
Article in English | MEDLINE | ID: mdl-36694131

ABSTRACT

BACKGROUND: Around the world, policymakers have clearly communicated that COVID-19 vaccination programs need to be accepted by a large proportion of the population to allow life return to normal. However, according to the Center for Disease Control, about 31% of the United States population had not completed the primary vaccination series as of November 2022. AIMS: The primary aim of this work is to identify the factors associated by American citizens with the decision to be vaccinated against COVID-19. In addition, the proportion of fatal events from COVID-19 vaccinations was estimated and compared with the data in the VAERS database. METHODS: An online survey of COVID-19 health experiences was conducted. Information was collected regarding reasons for and against COVID-19 inoculations, experiences with COVID-19 illness and COVID-19 inoculations by survey respondents and their social circles. Logit regression analyses were carried out to identify factors influencing the likelihood of being vaccinated. RESULTS: A total of 2840 participants completed the survey between December 18 and 23, 2021. 51% (1383 of 2840) of the participants were female and the mean age was 47 (95% CI 46.36-47.64) years. Those who knew someone who experienced a health problem from COVID-19 were more likely to be vaccinated (OR: 1.309, 95% CI 1.094-1.566), while those who knew someone who experienced a health problem following vaccination were less likely to be vaccinated (OR: 0.567, 95% CI 0.461-0.698). 34% (959 of 2840) reported that they knew at least one person who had experienced a significant health problem due to the COVID-19 illness. Similarly, 22% (612 of 2840) of respondents indicated that they knew at least one person who had experienced a severe health problem following COVID-19 vaccination. With these survey data, the total number of fatalities due to COVID-19 inoculation may be as high as 278,000 (95% CI 217,330-332,608) when fatalities that may have occurred regardless of inoculation are removed. CONCLUSION: Knowing someone who reported serious health issues either from COVID-19 or from COVID-19 vaccination are important factors for the decision to get vaccinated. The large difference in the possible number of fatalities due to COVID-19 vaccination that emerges from this survey and the available governmental data should be further investigated.


Subject(s)
COVID-19 , Humans , Female , Middle Aged , Male , COVID-19/epidemiology , COVID-19/prevention & control , COVID-19 Vaccines , Vaccination , Databases, Factual , Government
13.
J Agromedicine ; 28(2): 127-135, 2023 04.
Article in English | MEDLINE | ID: mdl-35387572

ABSTRACT

OBJECTIVES: Mental health literacy programs related to agriculture can help enhance skills among agricultural community members and service providers to assist farmers and producers who are experiencing distress. The aim of the current article is to describe an agricultural mental health literacy education-based intervention program offered to USDA Farm Service Agency farm financial service providers. The program was implemented as a self-paced, online training through USDA's AgLearn platform to N = 500 FSA staff. METHODS: Pre-/post-evaluations were used to measure objective and self-rated knowledge and skills. Correlations, paired-samples t-tests, ANOVA, and content analysis were used to analyze data. RESULTS: The training resulted in significant improvements in objective and self-rated knowledge. While there were no gender differences in objective knowledge, men's self-rated knowledge and skills were significantly higher than that of women at pre-test; at post-test, there were no significant gender differences in self-rated knowledge and skills. CONCLUSION: Evaluations of this agricultural mental health literacy program demonstrate its effectiveness for farm financial service providers. Expanding access to such trainings among agricultural service providers who interact with producers regularly can help improve agricultural communities' skills to initiate and engage in critical conversations about mental health.


Subject(s)
Health Literacy , Mental Health , Male , Humans , Female , Farms , Agriculture , Farmers
14.
Chemistry ; 29(1): e202202599, 2023 Jan 02.
Article in English | MEDLINE | ID: mdl-36134621

ABSTRACT

Infection of host cells by SARS-CoV-2 begins with recognition by the virus S (spike) protein of cell surface heparan sulfate (HS), tethering the virus to the extracellular matrix environment, and causing the subunit S1-RBD to undergo a conformational change into the 'open' conformation. These two events promote the binding of S1-RBD to the angiotensin converting enzyme 2 (ACE2) receptor, a preliminary step toward viral-cell membrane fusion. Combining ligand-based NMR spectroscopy with molecular dynamics, oligosaccharide analogues were used to explore the interactions between S1-RBD of SARS CoV-2 and HS, revealing several low-specificity binding modes and previously unidentified potential sites for the binding of extended HS polysaccharide chains. The evidence for multiple binding modes also suggest that highly specific inhibitors will not be optimal against protein S but, rather, diverse HS-based structures, characterized by high affinity and including multi-valent compounds, may be required.


Subject(s)
COVID-19 , SARS-CoV-2 , Humans , SARS-CoV-2/metabolism , Protein Binding , Protein Domains , Molecular Dynamics Simulation , Polysaccharides , Binding Sites , Spike Glycoprotein, Coronavirus/chemistry
15.
FEMS Microbiol Ecol ; 99(1)2022 12 14.
Article in English | MEDLINE | ID: mdl-36565717

ABSTRACT

The influence of mineralogy on the assembly of microbial communities in glacial environments has been difficult to assess due to complications in isolating mineralogy from other variables. Here we assess the abundance and composition of microbial communities that colonized defined minerals incubated for 12 months in two meltwater streams (N and S) emanating from Kaldalónsjökull (Kal), a basalt-hosted glacier in Iceland. The two streams shared similar meltwater geochemistry as well as bedrock and proglacial sediment elemental compositions. Yet genomic DNA and PCR-amplifiable 16S rRNA genes were detected only in Kal S. The amount of recoverable DNA was highest for hematite incubated in Kal S and the composition of 16S rRNA genes recovered from Kal S sediments was most like those recovered from hematite and magnetite, an effect driven largely by similarities in the relative abundance of the putative hydrogenotrophic iron reducer Rhodoferax. We suggest this is attributable to comminution and weathering reactions involving exposed iron silicate minerals that generate and release hydrogen and Fe(III) that can be coupled to support microbial metabolism in Kaldalónsjökull, and possibly other basaltic habitats. The low abundance of cells in Kal N could be due to low availability of Fe(III) or another substrate.


Subject(s)
Iron , Microbiota , Iron/metabolism , Ferric Compounds/metabolism , RNA, Ribosomal, 16S/genetics , Minerals/metabolism , Silicates
16.
ACS Cent Sci ; 8(5): 527-545, 2022 May 25.
Article in English | MEDLINE | ID: mdl-35647275

ABSTRACT

Heparan sulfate (HS) is a cell surface polysaccharide recently identified as a coreceptor with the ACE2 protein for the S1 spike protein on SARS-CoV-2 virus, providing a tractable new therapeutic target. Clinically used heparins demonstrate an inhibitory activity but have an anticoagulant activity and are supply-limited, necessitating alternative solutions. Here, we show that synthetic HS mimetic pixatimod (PG545), a cancer drug candidate, binds and destabilizes the SARS-CoV-2 spike protein receptor binding domain and directly inhibits its binding to ACE2, consistent with molecular modeling identification of multiple molecular contacts and overlapping pixatimod and ACE2 binding sites. Assays with multiple clinical isolates of SARS-CoV-2 virus show that pixatimod potently inhibits the infection of monkey Vero E6 cells and physiologically relevant human bronchial epithelial cells at safe therapeutic concentrations. Pixatimod also retained broad potency against variants of concern (VOC) including B.1.1.7 (Alpha), B.1.351 (Beta), B.1.617.2 (Delta), and B.1.1.529 (Omicron). Furthermore, in a K18-hACE2 mouse model, pixatimod significantly reduced SARS-CoV-2 viral titers in the upper respiratory tract and virus-induced weight loss. This demonstration of potent anti-SARS-CoV-2 activity tolerant to emerging mutations establishes proof-of-concept for targeting the HS-Spike protein-ACE2 axis with synthetic HS mimetics and provides a strong rationale for clinical investigation of pixatimod as a potential multimodal therapeutic for COVID-19.

17.
Health Promot Pract ; 23(1): 8-10, 2022 01.
Article in English | MEDLINE | ID: mdl-32517517

ABSTRACT

Farmers and ranchers (agricultural producers) have higher psychological distress and suicide rates than the general population. Poorer mental health status and outcomes among producers are often attributed to the continuously challenging economic, social, and climate-related changes to agriculture as an occupation and industry. This article describes the development of a training program for agribusiness professionals from the U.S. Department of Agriculture Farm Service Agency (N = 500) who work with producers, as they regularly interact with producers and thus are in a position to readily offer helpful mental health resources. The goal of the program was for agribusiness professionals to build skills and confidence to identify and respond to distressed producers. The educational program was offered primarily online and included a 1-day in-person training to practice skills to communicate with distressed producers and refer them to appropriate mental health resources. Evaluation of the program demonstrated participants experienced gains in knowledge and skills related to identifying and helping distressed producers.


Subject(s)
Mental Health , Suicide Prevention , Agriculture , Farmers/psychology , Farms , Humans
18.
Front Pharmacol ; 12: 660490, 2021.
Article in English | MEDLINE | ID: mdl-34421587

ABSTRACT

The severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2) pandemic has caused a significant number of fatalities and worldwide disruption. To identify drugs to repurpose to treat SARS-CoV-2 infections, we established a screen to measure the dimerization of angiotensin-converting enzyme 2 (ACE2), the primary receptor for the virus. This screen identified fenofibric acid, the active metabolite of fenofibrate. Fenofibric acid also destabilized the receptor-binding domain (RBD) of the viral spike protein and inhibited RBD binding to ACE2 in enzyme-linked immunosorbent assay (ELISA) and whole cell-binding assays. Fenofibrate and fenofibric acid were tested by two independent laboratories measuring infection of cultured Vero cells using two different SARS-CoV-2 isolates. In both settings at drug concentrations, which are clinically achievable, fenofibrate and fenofibric acid reduced viral infection by up to 70%. Together with its extensive history of clinical use and its relatively good safety profile, this study identifies fenofibrate as a potential therapeutic agent requiring an urgent clinical evaluation to treat SARS-CoV-2 infection.

19.
Comput Struct Biotechnol J ; 19: 2806-2818, 2021.
Article in English | MEDLINE | ID: mdl-33968333

ABSTRACT

SARS-CoV-2 has rapidly spread throughout the world's population since its initial discovery in 2019. The virus infects cells via a glycosylated spike protein located on its surface. The protein primarily binds to the angiotensin-converting enzyme-2 (ACE2) receptor, using glycosaminoglycans (GAGs) as co-receptors. Here, we performed bioinformatics and molecular dynamics simulations of the spike protein to investigate the existence of additional GAG binding sites on the receptor-binding domain (RBD), separate from previously reported heparin-binding sites. A putative GAG binding site in the N-terminal domain (NTD) of the protein was identified, encompassing residues 245-246. We hypothesized that GAGs of a sufficient length might bridge the gap between this site and the PRRARS furin cleavage site, including the mutation S247R. Docking studies using GlycoTorch Vina and subsequent MD simulations of the spike trimer in the presence of dodecasaccharides of the GAGs heparin and heparan sulfate supported this possibility. The heparan sulfate chain bridged the gap, binding the furin cleavage site and S247R. In contrast, the heparin chain bound the furin cleavage site and surrounding glycosylation structures, but not S247R. These findings identify a site in the spike protein that favors heparan sulfate binding that may be particularly pertinent for a better understanding of the recent UK and South African strains. This will also assist in future targeted therapy programs that could include repurposing clinical heparan sulfate mimetics.

20.
Mar Drugs ; 19(4)2021 Apr 03.
Article in English | MEDLINE | ID: mdl-33916819

ABSTRACT

Only palliative therapeutic options exist for the treatment of Alzheimer's Disease; no new successful drug candidates have been developed in over 15 years. The widely used clinical anticoagulant heparin has been reported to exert beneficial effects through multiple pathophysiological pathways involved in the aetiology of Alzheimer's Disease, for example, amyloid peptide production and clearance, tau phosphorylation, inflammation and oxidative stress. Despite the therapeutic potential of heparin as a multi-target drug for Alzheimer's disease, the repurposing of pharmaceutical heparin is proscribed owing to the potent anticoagulant activity of this drug. Here, a heterogenous non-anticoagulant glycosaminoglycan extract, obtained from the shrimp Litopenaeus vannamei, was found to inhibit the key neuronal ß-secretase, BACE1, displaying a more favorable therapeutic ratio compared to pharmaceutical heparin when anticoagulant activity is considered.


Subject(s)
Amyloid Precursor Protein Secretases/antagonists & inhibitors , Aspartic Acid Endopeptidases/antagonists & inhibitors , Glycosaminoglycans/pharmacology , Penaeidae/metabolism , Protease Inhibitors/pharmacology , Amyloid Precursor Protein Secretases/metabolism , Animals , Aspartic Acid Endopeptidases/metabolism , Blood Coagulation/drug effects , Enzyme Stability , Glycosaminoglycans/isolation & purification , Humans , Partial Thromboplastin Time , Protease Inhibitors/isolation & purification , Prothrombin Time
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