ATP Analogs to Study Human Histidine Kinases

NSF Award Search · 01002526DB NSF RESEARCH & RELATED ACTIVIT · $778,507 · view on nsf.gov ↗

Abstract

The Chemistry of Life Processes Program in the Chemistry Division is funding Dr. Mary Kay Pflum from Wayne State University to determine how the addition of phosphate groups to histidine amino acids in proteins affects their biological functions in mammalian cells. Dr. Pflum is developing analogs of adenosine 5’-triphosphate (ATP) as chemical tools to identify proteins that are phosphorylated at their histidines, in contrast to the more commonly studied phosphorylated amino acids, by kinase enzymes found in human cells. Kinases are associated with a wide variety of cellular events, including cell communication and adaption, and are often overactive in disease states. Thus, the study of kinases and protein phosphorylation impacts the understanding of normal and disease-related biology. This NSF award also encourages a future generation of scientists by exposing middle and high school students to protein structure and function through hands-on outreach activities at local schools. A toolkit of ATP analogs was developed for kinase-catalyzed labeling of protein substrates, which focused in prior work by the PI on serine, threonine, and tyrosine phosphorylation. Given the paucity of chemical tools to study phosphohistidine-mediated mammalian cell biology, the overall goal of this NSF award is to apply kinase-catalyzed labeling with ATP analogs to investigate histidine phosphorylation. Kinase-catalyzed labeling was established with the two known human histidine kinases, NME1 and

Key facts

NSF award ID
2514774
Awardee
Wayne State University (MI)
SAM.gov UEI
M6K6NTJ2MNE5
PI
Mary Kay H Pflum
Primary program
01002526DB NSF RESEARCH & RELATED ACTIVIT
All programs
Estimated total
$778,507
Funds obligated
$778,507
Transaction type
Standard Grant
Period
09/01/2025 → 08/31/2028