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MS
unreviewed

Serine hydroxymethyltransferase (SHMT1/SHMT2)

2 reactions · 2 pathways

What it does, reaction by reaction

2 reactions

One-Carbon Metabolism (Folate Cycle) Amino Acid & Nitrogen Metabolism · Cytosol + mitochondrion

step 2 Reversible

L-serine + THF ⇌ glycine + 5,10-methylene-THF + H₂O

Converts Serine Tetrahydrofolate (THF) into Glycine 5,10-Methylene-THF H2O

Notes

Serine hydroxymethyltransferase (SHMT1 cytosolic; SHMT2 mitochondrial) uses PLP (vitamin B6) to transfer the serine β-carbon to THF. This reversible reaction is a major source of 5,10-methylene-THF.

Deoxyribonucleotide Formation (Ribonucleotide Reductase pathway and thymidylate synthesis) Nucleotide Metabolism · Cytosol

step 8 Irreversible/directional

THF → 5,10-methylene-THF

Converts Tetrahydrofolate (THF) into 5,10-Methylene-THF

Notes

Serine hydroxymethyltransferase (SHMT) catalyzes serine + THF ⇌ glycine + 5,10-methylene-THF, requiring pyridoxal phosphate. The folate-bound one-carbon unit can also be supplied through the cytosolic mitochondrial one-carbon network; adequate folate metabolism is required to sustain this step.

Showing all 2 reactions.

What accelerates and inhibits it

Regulation is pathway-specific, so each context is listed separately

0 entries

No regulation recorded for this enzyme in the source documents.

Recent literature

Europe PMC · fetched just now · sorted by publication date

  1. 1
    One-carbon metabolism upregulated in lupus promotes the differentiation and effector functions of human B and T cells.

    Lin YH, Chen MH, Hsu TS, Chung WH, Lin PC, Liu PC, Leu CM. · 2026-08-01

    unreviewed
  2. 2
    Targeting NFATc1-regulated MTHFD2 one-carbon metabolism to suppress sustained T-cell-mediated inflammation in rheumatoid arthritis.

    Manolakou T, Shen J, Boddul S, Samiotaki M, Panagias MA, Sentis G, Silva TA, Argyriou A, Nikolopoulos D, Sanj… · 2026-06-10

    open access unreviewed
  3. 3
    Subcellular Redistribution of Endomembrane GPR15 Promotes NAD+-Mediated Metabolic Reprogramming and Boosts 5-FU Chemosensitivity in Colorectal Cancer.

    Yue Z, Dai W, Cao Z, Hu B, Wang Z, Ma X, Qin D, Zhang T, Sang Q, Mei J, Yu T, Zhou Y, Luo Z, Xu J, Yuan Z, Li… · 2026-05-01

    open access unreviewed
  4. 4
  5. 5
    Folate promotes colorectal cancer progression by impairing CD8<sup>+</sup> T cell function and recruitment via SLC19A1/p-AKT/NOTCH1 axis and CCL5 downregulation.

    Qing S, Ling Y, Lai Y, Hu Y, Zhong Y, Liu Y, Liu X, Fang Y, Qian J, Deng H, Peng Y, Wu D, Shen Z. · 2026-03-13

    open access unreviewed
  6. 6
  7. 7
    PHGDH-dependent serine metabolism in astrocytes: A key regulator of oxidative stress and pyroptosis in cerebral ischemia-reperfusion injury.

    Zhang J, Luo Y, Xie C, Zhang M, Qin H, Zhou Y, Wu X, Hu C, Hu F, Fei X, Zhang H, Li J, Fu Y, Yuan Y, Yang S, … · 2025-11-29

    cited 1× open access unreviewed
  8. 8
    Transcriptomic profiling of epigenetic regulators and metabolic reprogramming in human cholangiocarcinoma.

    Lopez-Pascual A, Elurbide J, Valbuena-Goiricelaya E, Latasa MU, Anaya E, Adan-Villaescusa E, Castelló-Uribe B… · 2026-06-04

    open access unreviewed
  9. 9
    A Nonketotic Hyperglycinemia Mouse Shows Wide-Ranging Biochemical Consequences of Elevated Glycine, Reduced Folate One-Carbon Charging, and Serine Deficiency.

    Swanson MA, Jiang H, Kolora LD, Molino R, Reisdorph R, Michel CR, Doenges KA, Leung KY, Lin X, Wong F, Lancas… · 2026-01-01

    cited 1× open access unreviewed
  10. 10
    Digital twins for in vivo metabolic flux estimations in patients with brain cancer.

    Meghdadi B, Al-Holou WN, Scott AJ, Mittal A, Liang N, Sravya P, Achreja A, O'Brien A, Do K, Wu Z, Feng J, Qi … · 2025-12-01

    cited 1× unreviewed

External claims. These come from an index outside this database and are not checked against it. Treat them as leads.