Biosensor Assay to Screen for Signaling Pathway Inhibition in Cancer
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1.SUBSTRATES FOR FLT3 KINASE AND USES THEREOF
- 发明人:
- 授权日:}
- 专利
2.Kinase Substrates and Methods of Use Thereof
- 发明人:
- 授权日:}
- 专利
3.Universal Kinase Substrates and Methods of Use Thereof
- 发明人:
- 授权日:}
- 专利
4.Lipid Droplet-Derived Monounsaturated Fatty Acids Traffic via PLIN5 to Allosterically Activate SIRT1
- 关键词:
- PROTEIN-KINASE-A; MEDITERRANEAN DIET; MITOCHONDRIAL-FUNCTION; CALORIERESTRICTION; INSULIN-RESISTANCE; METABOLIC DISEASE; GENE-EXPRESSION;PERILIPIN 2; PPAR-ALPHA; OLEIC-ACID
- Najt, Charles P.;Khan, Salmaan A.;Heden, Timothy D.;Witthuhn, Bruce A.;Perez, Minervo;Heier, Jason L.;Mead, Linnea E.;Franklin, Mallory P.;Karanja, Kenneth K.;Graham, Mark J.;Mashek, Mara T.;Bernlohr, David A.;Parker, Laurie;Chow, Lisa S.;Mashek, Douglas G.
- 《MOLECULAR CELL》
- 2020年
- 77卷
- 4期
- 期刊
Lipid droplets (LDs) provide a reservoir for triacylglycerol storage and are a central hub for fatty acid trafficking and signaling in cells. Lipolysis promotes mitochondrial biogenesis and oxidative metabolism via a SIRT1/PGC-1 alpha/PPAR alpha-dependent pathway through an unknown mechanism. Herein, we identify that monounsaturated fatty acids (MUFAs) allosterically activate SIRT1 toward select peptide-substrates such as PGC-1 alpha. MUFAs enhance PGC-1 alpha/PPARa alpha signaling and promote oxidative metabolism in cells and animal models in a SIRT1-dependent manner. Moreover, we characterize the LD protein perilipin 5 (PLIN5), which is known to enhance mitochondrial biogenesis and function, to be a fattyacid-binding protein that preferentially binds LD-derived monounsaturated fatty acids and traffics them to the nucleus following cAMP/PKA-mediated lipolytic stimulation. Thus, these studies identify the first-known endogenous allosteric modulators of SIRT1 and characterize a LD-nuclear signaling axis that underlies the known metabolic benefits of MUFAs and PLIN5.
...5.High-throughput Identification of FLT3Wild-type and Mutant Kinase Substrate Preferences and Application to Design of Sensitive In Vitro Kinase Assay Substrates
- 关键词:
- ACUTE MYELOID-LEUKEMIA; BIOSENSOR ASSAY; RESISTANCE; ACTIVATION; CRENOLANIB; MUTATIONS; INHIBITORS; SORAFENIB; PEPTIDE; MODELS
- Perez, Minervo;Blankenhorn, John;Murray, Kevin J.;Parker, Laurie L.
- 《MOLECULAR & CELLULAR PROTEOMICS》
- 2019年
- 18卷
- 3期
- 期刊
Acute myeloid leukemia (AML) is an aggressive disease that is characterized by abnormal increase of immature myeloblasts in blood and bone marrow. The FLT3 receptor tyrosine kinase plays an integral role in hematopoiesis, and one third of AML diagnoses exhibit gain-of-function mutations in FLT3, with the juxtamembrane domain internal tandem duplication (ITD) and the kinase domain D835Y variants observed most frequently. Few FLT3 substrates or phosphorylation sites are known, which limits insight into FLT3' s substrate preferences and makes assay design particularly challenging. We applied in vitro phosphorylation of a cell lysate digest (adaptation of the Kinase Assay Linked with Phosphoproteomics (KALIP) technique and similar methods) for high-throughput identification of substrates for three FLT3 variants (wild-type, ITD mutant, and D835Y mutant). Incorporation of identified substrate sequences as input into the KINATEST-ID substrate preference analysis and assay development pipeline facilitated the design of several peptide substrates that are phosphorylated efficiently by all three FLT3 kinase variants. These substrates could be used in assays to identify new FLT3 inhibitors that overcome resistant mutations to improve FLT3-positive AML treatment.
...6.Assays for tyrosine phosphorylation in human cells
- Garcia, BA
- POST-TRANSLATIONAL MODIFICATIONS THAT MODULATE ENZYME ACTIVITY
- 2019年
- 图书
7.Assays for tyrosine phosphorylation in human cells
- 关键词:
- SIGNALING NETWORKS; KINASE ACTIVATION; PENETRATING PEPTIDES; PROTEIN-KINASES; ABL; INHIBITOR; BCR; RECEPTOR; BIOSENSOR; IMATINIB
- Kruk, Monica;Widstrom, Naomi;Jena, Sampreeti;Wolter, Nicole L.;Blankenhorn, John F.;Abdalla, Ibrahim;Yang, Tzu-Yi;Parker, Laurie L.
- 《POST-TRANSLATIONAL MODIFICATIONS THAT MODULATE ENZYME ACTIVITY》
- 2019年
- 会议
Tyrosine kinases are important for many cellular processes and disruption of their regulation is a factor in diseases like cancer, therefore they are a major target of anticancer drugs. There are many ways to measure tyrosine kinase activity in cells by monitoring endogenous substrate phosphorylation, or by using peptide substrates and incubating them with cell lysates containing active kinases. However, most of these strategies rely on antibodies and/or are limited in how accurately they model the intracellular environment. In cases in which activity needs to be measured in cells, but endogenous substrates are not known and/or suitable phosphospecific antibodies are not available, cell-deliverable peptide substrates can be an alternative and can provide information on activation and inhibition of kinases in intact, live cells. In this chapter, we review this methodology and provide a protocol for measuring Abl kinase activity in human cells using enzyme-linked immunosorbent assay (ELISA) with a generic antiphosphotyrosine antibody for detection.
...8.In Silico Design and in Vitro Characterization of Universal Tyrosine Kinase Peptide Substrates
- 关键词:
- PROTEIN-KINASE; CANCER-THERAPY; SPECIFICITY; INHIBITORS; FAMILY; ASSAYS
- Marholz, Laura J.;Zeringo, Nicholas A.;Lou, Hua Jane;Turk, Benjamin E.;Parker, Laurie L.
- 《BIOCHEMISTRY》
- 2018年
- 57卷
- 12期
- 期刊
A majority of the 90 human protein tyrosine kinases (PTKs) are understudied "orphan" enzymes with few or no known substrates. Designing experiments aimed at assaying the catalytic activity of these PTKs has been a long-running problem. In the past, researchers have used polypeptides with a randomized 4:1 molar ratio of glutamic acid to tyrosine as general PTK substrates. However, these substrates are inefficient and perform poorly for many applications. In this work, we apply the KINATEST-ID pipeline for artificial kinase substrate discovery to design a set of candidate "universal" PTK peptide substrate sequences. We identified two unique peptide sequences from this set that had robust activity with a panel of 15 PTKs tested in an initial screen. Kinetic characterization with seven receptor and non receptor PTKs confirmed these peptides to be efficient and general PTK substrates. The broad scope of these artificial substrates demonstrates that they should be useful as tools for probing understudied PTK activity.
...9.A Cell-Based Assay for Measuring Endogenous BcrAbl Kinase Activity and Inhibitor Resistance
- 关键词:
- CHRONIC MYELOID-LEUKEMIA; DIFFERENTIAL SENSITIVITY; PEPTIDE BIOSENSOR;DRUG DISCOVERY; ABL ACTIVITY; FOLLOW-UP; IMATINIB; NILOTINIB; CANCER;PHOSPHORYLATION
- Ouellette, Steven B.;Noel, Brett M.;Parker, Laurie L.
- 《PLOS ONE》
- 2016年
- 11卷
- 9期
- 期刊
Kinase enzymes are an important class of drug targets, particularly in cancer. Cell-based kinase assays are needed to understand how potential kinase inhibitors act on their targets in a physiologically relevant context. Current cell-based kinase assays rely on antibody-based detection of endogenous substrates, inaccurate disease models, or indirect measurements of drug action. Here we expand on previous work from our lab to introduce a 96-well plate compatible approach for measuring cell-based kinase activity in disease-relevant human chronic myeloid leukemia cell lines using an exogenously added, multi-functional peptide substrate. Our cellular models natively express the BcrAbl oncogene and are either sensitive or have acquired resistance to well-characterized BcrAbl tyrosine kinase inhibitors. This approach measures IC50 values comparable to established methods of assessing drug potency, and its robustness indicates that it can be employed in drug discovery applications. This medium-throughput assay could bridge the gap between single target focused, high-throughput in vitro assays and lower-throughput cell-based follow-up experiments.
...10.Modular, Antibody-free Time-Resolved LRET Kinase Assay Enabled by Quantum Dots and Tb3+-sensitizing Peptides
- 关键词:
- RESONANCE ENERGY-TRANSFER; DIAGNOSTIC ASSAY; PHOSPHORYLATION; TERBIUM; PLATFORMS; ACCEPTORS; BINDING; DONORS; PROBES
- Cui, Wei;Parker, Laurie L.
- 《SCIENTIFIC REPORTS》
- 2016年
- 6卷
- 期
- 期刊
Fluorescent drug screening assays are essential for tyrosine kinase inhibitor discovery. Here we demonstrate a flexible, antibody-free TR-LRET kinase assay strategy that is enabled by the combination of streptavidin-coated quantum dot (QD) acceptors and biotinylated, Tb3+ sensitizing peptide donors. By exploiting the spectral features of Tb3+ and QD, and the high binding affinity of the streptavidin-biotin interaction, we achieved multiplexed detection of kinase activity in a modular fashion without requiring additional covalent labeling of each peptide substrate. This strategy is compatible with high-throughput screening, and should be adaptable to the rapidly changing workflows and targets involved in kinase inhibitor discovery.
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