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Structural basis of lipid head group entry to the Kennedy pathway by FLVCR1

Phosphatidylcholine and phosphatidylethanolamine, the two most abundant phospholipids in mammalian cells, are synthesized de novo by the Kennedy pathway from choline and ethanolamine, respectively1–6. Despite the essential roles of these lipids, the mechanisms that enable the cellular uptake of choline and ethanolamine remain unknown. Here we show that the protein encoded by FLVCR1, whose mutation leads to the neurodegenerative syndrome posterior column ataxia and retinitis pigmentosa7–9, transports extracellular choline and ethanolamine into cells for phosphorylation by downstream kinases to initiate the Kennedy pathway. Structures of FLVCR1 in the presence of choline and ethanolamine reveal that both metabolites bind to a common binding site comprising aromatic and polar residues. Despite binding to a common site, FLVCR1 interacts in different ways with the larger quaternary amine of choline in and with the primary amine of ethanolamine. Structure-guided mutagenesis ident

Clustal-omega
Acta-crystallogr
Send-energy
Aspects-med
Lipid-res
Acids-res
Cell-biol
Acta-lipids-lipid
Resolution-revolution
Recent-advances

Physiology and diseases of tissue-resident macrophages

Embryo-derived tissue-resident macrophages are the first representatives of the haematopoietic lineage to emerge in metazoans. In mammals, resident macrophages originate from early yolk sac progenitors and are specified into tissue-specific subsets during organogenesis—establishing stable spatial and functional relationships with specialized tissue cells—and persist in adults. Resident macrophages are an integral part of tissues together with specialized cells: for instance, microglia reside with neurons in brain, osteoclasts reside with osteoblasts in bone, and fat-associated macrophages reside with white adipocytes in adipose tissue. This ancillary cell type, which is developmentally and functionally distinct from haematopoietic stem cell and monocyte-derived macrophages, senses and integrates local and systemic information to provide specialized tissue cells with the growth factors, nutrient recycling and waste removal that are critical for tissue growth, homeostasis and

Santiago
Regióetropolitana
Chile
Le-guyader
Gomez-perdiguero
Hassnain-waqas
Meijer
Ng-development
Brain-res
Crohns-colitis
Lipid-res
Liver-physiol

"Absence of proof is not proof of absence" – Prof Noakes on Keys' Cholesterol Con

In the final instalment of the Cholesterol Con series, Noakes concludes the account of the greatest scam in the history of modern medicine.

Zimbabwe
Minnesota
United-states
New-york
Malaysia
Woodhill
New-south-wales
Australia
United-kingdom
Iran
Argentina
Brazil

The invention of the Mediterranean Diet – Prof Noakes on Keys' Cholesterol Con

Noakes continues Keys' cholesterol con in 1993 with the invention of the Mediterranean Diet by Harvard's Professor Walter Willett, MD.

Malta
Australia
United-states
Paris
France-general
France
United-kingdom
Hong-kong
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