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  • Dimeric Structure of the Pseudokinase IRAK3 Suggests an Allosteric Mechanism for Negative Regulation.

Dimeric Structure of the Pseudokinase IRAK3 Suggests an Allosteric Mechanism for Negative Regulation.

Structure (London, England : 1993) (2020-11-26)
Sven M Lange, Marina I Nelen, Philip Cohen, Yogesh Kulathu
摘要

Interleukin-1 receptor associated kinases (IRAKs) are key players in innate immune signaling that mediate the host response to pathogens. In contrast to the active kinases IRAK1 and IRAK4, IRAK2 and IRAK3 are pseudokinases lacking catalytic activity and their functions are poorly understood. IRAK3 is thought to be a negative regulator of innate immune signaling and mutations in IRAK3 are associated with asthma and cancer. Here, we report the crystal structure of the human IRAK3 pseudokinase domain in a closed, pseudoactive conformation. IRAK3 dimerizes in a unique way through a head-to-head arrangement not observed in any other kinases. Multiple conserved cysteine residues imply a potential redox control of IRAK3 conformation and dimerization. By analyzing asthma-associated mutations, we identify an evolutionarily conserved surface on IRAK3 that could form an interaction interface with IRAK4, suggesting a model for the negative regulation of IRAK4 by IRAK3.

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HEPES, ≥99.5% (titration)
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2-巯基乙醇, for molecular biology, suitable for electrophoresis, suitable for cell culture, BioReagent, 99% (GC/titration)
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氯化镁 溶液, for molecular biology, 1.00 M±0.01 M
Supelco
SSYPRO® Orange蛋白凝胶染色剂
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星形孢菌素链霉菌sp., Staurosporine, CAS 62996-74-, is a cell-permeable, potent, reversible, ATP-competitive inhibitor of protein kinases (IC₅₀ = 7, 20, 1.3, 0.7, & 8.5 nM for PKA, CAMK, MLCK, PKC, & PKG, respectively).
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苯甲脒 盐酸盐 水合物, ≥99%