Sterol and Sphingoid Glycoconjugates from Microalgae

article published in 2018

Sterol and Sphingoid Glycoconjugates from Microalgae is …
instance of (P31):
scholarly articleQ13442814
review articleQ7318358

External links are
P356DOI10.3390/MD16120514
P932PMC publication ID6315552
P698PubMed publication ID30563009

P50authorValentin StonikQ16702301
P2093author name stringInna V Stonik
P2860cites workSterol composition of phaeodactylum tricornutum as influenced by growth temperature and light spectral quality.Q50536390
Sterols and Fatty Acids of the Harmful Dinoflagellate Cochlodinium polykrikoides.Q51306664
Molecular Characterization and Anti-inflammatory Activity of Galactosylglycerides and Galactosylceramides from the Microalga Isochrysis galbana.Q51360317
Immunoregulatory activity by daucosterol, a beta-sitosterol glycoside, induces protective Th1 immune response against disseminated Candidiasis in mice.Q53576625
Astasin, a novel cytotoxic carbohydrate-conjugated ergosterol from the colorless euglenoid, Astasia longaQ72109698
UDP-glucose sterol beta-D-glucosyltransferase, a plasma membrane-bound enzyme of plants: enzymatic properties and lipid dependenceQ72720021
Ceramide glucosylation in bean hypocotyl microsomes: evidence that steryl glucoside serves as glucose donorQ73323579
Plasma Membrane Lipid Alterations Associated with Cold Acclimation of Winter Rye Seedlings (Secale cereale L. cv Puma)Q83264899
"Dinoflagellate Sterols" in marine diatomsQ84215760
Nutritional evaluation of Australian microalgae as potential human health supplementsQ28543703
Low-Molecular-Weight Metabolites from Diatoms: Structures, Biological Roles and BiosynthesisQ28647852
Plant sterols and sterolins: a review of their immune-modulating propertiesQ33670700
A data mining approach to dinoflagellate clustering according to sterol composition: correlations with evolutionary historyQ33683614
Sitosterol-beta-glucoside as primer for cellulose synthesis in plantsQ34107984
Lipid class composition of the microalga Pavlova lutheri: eicosapentaenoic and docosahexaenoic acids.Q34187524
The role of phytosterols and phytosterolins in immune modulation: a review of the past 10 yearsQ34436867
Complete genome sequence and lytic phase transcription profile of a CoccolithovirusQ34442899
Cryptophyceae and rhodophyceae; chemotaxonomy, phylogeny, and applicationQ34459732
HOW MANY SPECIES OF ALGAE ARE THERE?Q34519659
Viral glycosphingolipids induce lytic infection and cell death in marine phytoplankton.Q35011506
Sterols in microorganismsQ35048964
Plant sphingolipids: structural diversity, biosynthesis, first genes and functionsQ35143339
Recently discovered functions of glucosylceramides in plants and fungiQ35162993
Glycosidic bond cleavage is not required for phytosteryl glycoside-induced reduction of cholesterol absorption in miceQ35857458
Cell biology of cnidarian-dinoflagellate symbiosis.Q36023287
Host-virus dynamics and subcellular controls of cell fate in a natural coccolithophore populationQ36437084
Viral serine palmitoyltransferase induces metabolic switch in sphingolipid biosynthesis and is required for infection of a marine algaQ36770718
Phytosterol glycosides reduce cholesterol absorption in humansQ37162416
The functions of steryl glycosides come to those who wait: Recent advances in plants, fungi, bacteria and animalsQ37688647
Steroid glycosides from marine organismsQ37824889
Sterol glycosyltransferases--the enzymes that modify sterolsQ37862116
Immunological functions of steryl glycosidesQ38039373
Membrane domains and the "lipid raft" conceptQ38059721
Plant Sterols: Diversity, Biosynthesis, and Physiological Functions.Q38966103
Microalgae lipid characterizationQ41548140
Novel molecular determinants of viral susceptibility and resistance in the lipidome of Emiliania huxleyiQ42249670
Novel sensitive determination of steryl glycosides in biodiesel by gas chromatography-mass spectroscopy.Q42905575
In vitro binding of Helicobacter pylori to monohexosylceramides.Q43768087
Structural elucidation of two types of novel glycosphingolipids in three strains of Skeletonema by liquid chromatography coupled with mass spectrometryQ44462312
Glycosylceramides from marine green microalga Tetraselmis sp.Q44493983
(Glyco)sphingolipidology: an amazing challenge and opportunity for systems biologyQ45022390
Total, free and conjugated sterolic forms in three microalgae used in mariculture.Q45148510
Sterol chemotaxonomy of marine pelagophyte algae.Q45923477
Autoinhibitory sterol sulfates mediate programmed cell death in a bloom-forming marine diatom.Q46269139
Sphingolipids in marine microalgae: Development and application of a mass spectrometric method for global structural characterization of ceramides and glycosphingolipids in three major phylaQ46312351
Phospholipid:diacylglycerol acyltransferase is a multifunctional enzyme involved in membrane lipid turnover and degradation while synthesizing triacylglycerol in the unicellular green microalga Chlamydomonas reinhardtiiQ46543965
Glycosylation induces shifts in the lateral distribution of cholesterol from ordered towards less ordered domainsQ46784581
Rapid and highly accurate detection of steryl glycosides by ultraperformance liquid chromatography-quadrupole time-of-flight mass spectrometry (UPLC-Q-TOF-MS).Q46844929
Characterization of steryl glycosides in marine microalgae by gas chromatography-triple quadrupole mass spectrometry (GC-QQQ-MS).Q48194185
Lipidomics of Thalassiosira pseudonana Under Phosphorus Stress Reveal Underlying Phospholipid Substitution Dynamics and Novel Diglycosylceramide Substitutes.Q50157546
P275copyright licenseCreative Commons AttributionQ6905323
P6216copyright statuscopyrightedQ50423863
P433issue12
P407language of work or nameEnglishQ1860
P921main subjectvirusQ808
carbohydrateQ11358
microphyteQ589518
drug discoveryQ1418791
organism formQ55597235
P304page(s)514
P577publication date2018-12-17
P1433published inMarine DrugsQ2122804
P1476titleSterol and Sphingoid Glycoconjugates from Microalgae
P478volume16

Reverse relations

cites work (P2860)
Q89834361Marine Glycoconjugates: Trends and Perspectives
Q89860434Multi-Omic Profiling of Melophlus Sponges Reveals Diverse Metabolomic and Microbiome Architectures that Are Non-overlapping with Ecological Neighbors
Q93108600Promises and Challenges of Microalgal Antioxidant Production

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