Mechanisms of substrate recognition and catalysis in a mammalian phosphatidylserine synthase 2

Mammalian phosphatidylserine synthase-1 and -2, PSS1 and PSS2, synthesize phosphatidylserine (PS) by replacing the headgroup of either phosphatidylcholine or phosphatidylethanolamine (PE) with a serine. We determined structures of PSS2 from Equus caballus in complex with either a PE or a serine substrate to resolutions of 2.8 to 3.2 Å. The structures define substrate binding sites and reveal that the phosphate group of the PE is coordinated by two Ca 2+ . In addition, we found that PSS2 has significant phospholipase D (PLD) activity in the absence of serine and that Ca 2+ is required for the PLD activity. These findings enrich and refine our knowledge in the mechanisms of substrate recognition and catalysis in mammalian PSS.

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Journal
Proceedings of the National Academy of Sciences
Published
2026-09-29
DOI
https://doi.org/10.1073/pnas.2607382123
Primary Topic
Protein Kinase Regulation and GTPase Signaling
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article
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article

Mechanisms of substrate recognition and catalysis in a mammalian phosphatidylserine synthase 2

Hongyuan Yang, Arthur D. Laganowsky, Ming Zhou, Lie Wang et al.
Proceedings of the National Academy of Sciences
Protein Kinase Regulation and GTPase Signaling
article

Mechanisms of substrate recognition and catalysis in a mammalian phosphatidylserine synthase 2

Hongyuan Yang, Arthur D. Laganowsky, Ming Zhou, Lie Wang, Zhen Zhang
article en

Abstract

Mammalian phosphatidylserine synthase-1 and -2, PSS1 and PSS2, synthesize phosphatidylserine (PS) by replacing the headgroup of either phosphatidylcholine or phosphatidylethanolamine (PE) with a serine. We determined structures of PSS2 from Equus caballus in complex with either a PE or a serine substrate to resolutions of 2.8 to 3.2 Å. The structures define substrate binding sites and reveal that the phosphate group of the PE is coordinated by two Ca 2+ . In addition, we found that PSS2 has significant phospholipase D (PLD) activity in the absence of serine and that Ca 2+ is required for the PLD activity. These findings enrich and refine our knowledge in the mechanisms of substrate recognition and catalysis in mammalian PSS.

Proceedings of the National Academy of SciencesVol. 123(40)
Baylor College of Medicine (US), Texas A&M University (US), The University of Texas Health Science Center at Houston (US)
Openalex Percentile: Top 20%
Protein Kinase Regulation and GTPase Signaling
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Mechanisms of substrate recognition and catalysis in a mammalian phosphatidylserine synthase 2 — Hongyuan Yang, Arthur D. Laganowsky, et al. · Proceedings of the National Academy of Sciences (2026) | TGRS Research Map | TGRS