the enzyme specifically phosphonylates the target protein at serine residues.
researchers discovered that the compound phosphonylates multiple cellular substrates.
the reaction mechanism shows how the reagent phosphonylates the hydroxyl group.
in vitro studies demonstrate that the kinase phosphonylates the receptor tyrosine.
the drug phosphonylates and thereby activates the transcription factor.
this signaling pathway phosphonylates downstream effectors.
the mutation prevents the enzyme from phosphonylating its natural substrate.
mass spectrometry revealed which proteins the agent phosphonylates.
the process phosphonylates both nuclear and cytoplasmic proteins.
inhibition of the protein prevents it from phosphonylating downstream targets.
the substrate analog competitively inhibits the enzyme that phosphonylates the membrane receptor.
cellular assays show that the toxin phosphonylates critical signaling proteins.
the enzyme specifically phosphonylates the target protein at serine residues.
researchers discovered that the compound phosphonylates multiple cellular substrates.
the reaction mechanism shows how the reagent phosphonylates the hydroxyl group.
in vitro studies demonstrate that the kinase phosphonylates the receptor tyrosine.
the drug phosphonylates and thereby activates the transcription factor.
this signaling pathway phosphonylates downstream effectors.
the mutation prevents the enzyme from phosphonylating its natural substrate.
mass spectrometry revealed which proteins the agent phosphonylates.
the process phosphonylates both nuclear and cytoplasmic proteins.
inhibition of the protein prevents it from phosphonylating downstream targets.
the substrate analog competitively inhibits the enzyme that phosphonylates the membrane receptor.
cellular assays show that the toxin phosphonylates critical signaling proteins.
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