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sho c. takatori lipid membrane 2019

sho c. takatori lipid membrane 2019 PMP2/FABP8 induces PI(4,5)P2-dependent transbilayer reorganization of sphingomyelin in the plasma membrane: Cell Reports Nonequilibrium Dynamics at Cellular Interfaces:

Nonequilibrium Dynamics at Cellular Interfaces: Insights From Simulation and Theory Jiao 2024 WIREs Computational Molecular Science Wiley Online Library A tuneable minimal cell membrane reveals that two lipid species suffice for life Nature Communications Frontiers Protein Amphipathic Helix Insertion: A Mechanism to Induce Membrane Fission Lipid Interactions of a Ciliary Membrane TRP Channel: Simulation and Structural Studies of Polycystin 2 ScienceDirect Frontiers Lipid Rafts, Sphingolipids, and Ergosterol in Yeast Vacuole Fusion and Maturation

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Lee SB, Kim JJ, Han SA, Fan Y, Guo LS, Aziz K, et al

sho c. takatori lipid membrane 2019 PMP2/FABP8 induces PI(4,5)P2-dependent transbilayer reorganization of sphingomyelin in the plasma membrane: Cell Reports Nonequilibrium Dynamics at Cellular Interfaces:

ASCO 2012 Meeting, 2012

sho c. takatori lipid membrane 2019 PMP2/FABP8 induces PI(4,5)P2-dependent transbilayer reorganization of sphingomyelin in the plasma membrane: Cell Reports Nonequilibrium Dynamics at Cellular Interfaces:

10.1083/jcb.200809125 123 NarendraD

sho c. takatori lipid membrane 2019 PMP2/FABP8 induces PI(4,5)P2-dependent transbilayer reorganization of sphingomyelin in the plasma membrane: Cell Reports Nonequilibrium Dynamics at Cellular Interfaces:

Two calpain-sensitive hinge regions (H1 and H2) separate the 24 repeats in a rod-1 domain (repeats 115), rod-2 domain (repeats 1623), and repeat 24

sho c. takatori lipid membrane 2019 PMP2/FABP8 induces PI(4,5)P2-dependent transbilayer reorganization of sphingomyelin in the plasma membrane: Cell Reports Nonequilibrium Dynamics at Cellular Interfaces:

Markov, A

sho c. takatori lipid membrane 2019 PMP2/FABP8 induces PI(4,5)P2-dependent transbilayer reorganization of sphingomyelin in the plasma membrane: Cell Reports Nonequilibrium Dynamics at Cellular Interfaces:
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