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sho c. takatori lipid membrane 2019

sho c. takatori lipid membrane 2019 Structural dissection of ergosterol metabolism reveals a pathway optimized for phase separation PMP2/FABP8 induces PI(4,5)P2-dependent transbilayer reorganization

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doi:10.1186/1471-2261-14-88

sho c. takatori lipid membrane 2019 Structural dissection of ergosterol metabolism reveals a pathway optimized for phase separation PMP2/FABP8 induces PI(4,5)P2-dependent transbilayer reorganization

First isolated in the 1970s by Dr

sho c. takatori lipid membrane 2019 Structural dissection of ergosterol metabolism reveals a pathway optimized for phase separation PMP2/FABP8 induces PI(4,5)P2-dependent transbilayer reorganization

DiMari, J., Megyesi, J., Udvarhelyi, N., Price, P., Davis, R

sho c. takatori lipid membrane 2019 Structural dissection of ergosterol metabolism reveals a pathway optimized for phase separation PMP2/FABP8 induces PI(4,5)P2-dependent transbilayer reorganization

Acts as a hydrogen acceptor in enzymatic determination of NADP and NADPH, it is used to reduced back to glutathione (GSH) via the NADPH-dependent enzyme glutathione reductase

sho c. takatori lipid membrane 2019 Structural dissection of ergosterol metabolism reveals a pathway optimized for phase separation PMP2/FABP8 induces PI(4,5)P2-dependent transbilayer reorganization
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