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Reed, A.

Publications and source records attributed to Reed, A..

2 recordsLinked to original sources

TMEM164 is an acyltransferase that forms ferroptotic polyunsaturated ether phospholipids

Ferroptosis is an iron-dependent form of cell death driven by the oxidation of polyunsaturated (PUFA) phospholipids. Large-scale genetic screens have pointed to a specialized role for PUFA ether phospholipids (ePLs) in promoting ferroptosis. Our understanding of the enzymes involved in PUFA ePL production, however, remains incomplete. Here we show using a combination of pathway mining of genetic dependency maps, AlphaFold-guided structure predictions, and targeted lipidomics that the uncharacterized transmembrane protein TMEM164 - genetic ablation of which has been shown to protect cells from ferroptosis - is a cysteine active-center enzyme that selectively transfers C20:4 acyl chains from phosphatidylcholine to lyso-ePLs to furnish PUFA-ePLs. TMEM164-null cells show substantial reductions in PUFA-ePLs, but not PUFA ester phospholipids, supporting that the selective suppression of PUFA-ePLs is sufficient to protect cells from ferroptosis and designating TMEM164 as a key enzyme specifically responsible for regulating this class of lipids.

biochemistry↗

Vγ usage distinguishes pro- and anti-tumor intestinal γδ T cell subsets

{gamma}{delta} T cells physiologically scan the intestinal epithelium, representing a substantial fraction of infiltrating lymphocytes in colorectal cancer (CRC), albeit their role in CRC remains unclear. Using murine CRC models, we found that most {gamma}{delta} T cells in pre- or non-tumor colon express V{gamma}1+ or V{gamma}7+ and exhibit a cytotoxic profile. Targeting these {gamma}{delta} T cell subsets, as well as conditionally interfering with {gamma}{delta} T cell function at early stages of tumorigenesis led to heightened tumor development, suggesting anti-CRC functions for V{gamma}1+ and V{gamma}7+ subsets. In contrast, ROR{gamma}t+ {gamma}{delta} T cell subsets, including V{gamma}4+ and microbiotadependent V{gamma}6+, accumulated during CRC progression. Conditional deletion of ROR{gamma}t or V{gamma} chains revealed redundant roles for IL-17-producing V{gamma}4+ and V{gamma}6+ {gamma}{delta} T cells in promoting tumor growth. Our results uncover pro- and anti-tumor roles for {gamma}{delta} T cell subsets.

immunology↗