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Differences in the Fatty Acid Profile, Morphology, and Tetraacetylphytosphingosine-Forming Capability Between Wild-Type and Mutant Wickerhamomyces ciferrii.
Choi JY, Hwang HJ, Cho WY, Choi JI, Lee PC. Choi JY, et al. Front Bioeng Biotechnol. 2021 Jun 9;9:662979. doi: 10.3389/fbioe.2021.662979. eCollection 2021. Front Bioeng Biotechnol. 2021. PMID: 34178960 Free PMC article.
One tetraacetylphytosphingosine (TAPS)-producing Wickerhamomyces ciferrii mutant was obtained by exposing wild-type W. ciferrii to gamma-ray irradiation. ...
One tetraacetylphytosphingosine (TAPS)-producing Wickerhamomyces ciferrii mutant was obtained by exposing wild-type W. ciferrii to ga …
Formation of Extracellular Sphingolipids by Microorganisms: IV. Pilot-Plant Production of Tetraacetylphytosphingosine by Hansenula ciferrii.
Maister HG, Rogovin SP, Stodola FH, Wickerham LJ. Maister HG, et al. Appl Microbiol. 1962 Sep;10(5):401-6. doi: 10.1128/am.10.5.401-406.1962. Appl Microbiol. 1962. PMID: 16349621 Free PMC article.
Tetraacetylphytosphingosine (TAPS) formation by the F-60-10 mating type strain of the yeast Hansenula ciferrii, previously observed on agar plates, has been shown to take place in submerged cultures. ...
Tetraacetylphytosphingosine (TAPS) formation by the F-60-10 mating type strain of the yeast Hansenula ciferrii, previously observed o
Combined application of targeted and untargeted proteomics identifies distinct metabolic alterations in the tetraacetylphytosphingosine (TAPS) producing yeast Wickerhamomyces ciferrii.
Wolff D, ter Veld F, Köhler T, Poetsch A. Wolff D, et al. J Proteomics. 2013 Apr 26;82:274-87. doi: 10.1016/j.jprot.2013.03.002. Epub 2013 Mar 14. J Proteomics. 2013. PMID: 23500128
The Wickerhamomyces ciferrii strain NRRL Y-1031 F-60-10A is a well-known producer of tetraacetylphytosphingosine (TAPS) and used for the biotechnological production of sphingolipids and ceramides. ...
The Wickerhamomyces ciferrii strain NRRL Y-1031 F-60-10A is a well-known producer of tetraacetylphytosphingosine (TAPS) and used for …
Engineering Yarrowia lipolytica for de novo production of tetraacetyl phytosphingosine.
Han C, Jang M, Kim MJ, Han MH, Lee KR, Hahn JS, Ahn J. Han C, et al. J Appl Microbiol. 2021 Jun;130(6):1981-1992. doi: 10.1111/jam.14931. Epub 2020 Nov 30. J Appl Microbiol. 2021. PMID: 33190388
AIMS: To genetically engineer the oleaginous yeast Yarrowia lipolytica for de novo production of tetraacetylphytosphingosine (TAPS), a precursor of phytosphingosine, and optimization of fermentation conditions for high yield. ...
AIMS: To genetically engineer the oleaginous yeast Yarrowia lipolytica for de novo production of tetraacetylphytosphingosine (TAPS), …
Phytoceramide shows neuroprotection and ameliorates scopolamine-induced memory impairment.
Jung JC, Lee Y, Moon S, Ryu JH, Oh S. Jung JC, et al. Molecules. 2011 Oct 28;16(11):9090-100. doi: 10.3390/molecules16119090. Molecules. 2011. PMID: 22037667 Free PMC article.
Phytoceramide showed neuro-protective activity in the glutamate-induced toxicity in cultured cortical neuronal cells. Neither phytosphingosine nor tetraacetylphytosphingosine (TAPS) showed neuroproective effects in neuronal cells. ...
Phytoceramide showed neuro-protective activity in the glutamate-induced toxicity in cultured cortical neuronal cells. Neither phytosphingosi …
Quantification of the wound healing using polarization-sensitive optical coherence tomography.
Oh JT, Lee SW, Kim YS, Suhr KB, Kim BM. Oh JT, et al. J Biomed Opt. 2006 Jul-Aug;11(4):041124. doi: 10.1117/1.2338826. J Biomed Opt. 2006. PMID: 16965152 Free article.
For each subject, three biopsy lesions are created on each ear: one site is not treated (control); the second site is treated with sphingosylphosphorylcholine, which is expected to promote healing; and the last is administered with tetraacetylphytosphingosine, which negati …
For each subject, three biopsy lesions are created on each ear: one site is not treated (control); the second site is treated with sphingosy …
Anti-angiogenic effect of tetraacetyl-phytosphingosine.
Kwon YB, Kim CD, Kim BJ, Kim MY, Park CS, Yoon TJ, Seo YJ, Suhr KB, Park JK, Lee JH. Kwon YB, et al. Exp Dermatol. 2007 Apr;16(4):311-7. doi: 10.1111/j.1600-0625.2006.00530.x. Exp Dermatol. 2007. PMID: 17359337