Identification of a Constitutively Active Mutant Mouse IRAK2 by Retroviral Expression Screening.

Mol Biotechnol

Department of Clinical Laboratory, The Sixth Affiliated Hospital of Guangzhou Medical University, Qingyuan People's Hospital, Qingyuan, 511518, Guangdong, China.

Published: April 2018

AI Article Synopsis

  • The study explores the role of IRAK2 kinase activity in TLR signaling by creating two versions of the IRAK2 gene: a wild type (IRAK2-WT) and a mutant with a non-functional ATP-binding site (IRAK2-KD).
  • Researchers used retroviral vectors to introduce these genes into IRAK2 knockout macrophages, allowing them to analyze how these modifications affected TLR-mediated signaling, particularly after LPS induction.
  • Findings indicated that overexpression of IRAK2-WT enhanced IRAK2 expression, while IRAK2-KD did not support this modification and led to decreased IRAK2 protein stability, highlighting the role of IRAK4 in this stability during L

Article Abstract

To identify the importance of IRAK2 kinase activity in TLR-mediated signaling pathways, we constructed a retroviral vector harboring either a mouse IRAK2 gene (IRAK2-WT) or with its mutant with loss of function of its ATP-binding site (IRAK2-KD). Further, we comparatively analyzed for the gain of function and modulations in TLR-mediated signaling pathways in IRAK2 knockout (IRAK2-KO) macrophages upon introduction of the IRAK2-WT retroviral constructs. The pBS/IRAK2-KD with the ATP-binding site mutation in IRAK2 was obtained by using site-specific mutagenesis. The recombinants were identified with appropriate double digestion and sequence analysis. The recombinant vector constructs were transfected by lipofection into phoenix packaging cells. The viral vectors (10 cfu/mL) with the construct were allowed to infect IRAK2-KO macrophages. The results showed that IRAK2-WT gene overexpressed in the IRAK2-KO macrophages exhibited a modified IRAK2 expression upon LPS induction. However, the modification was absent with IRAK2-KD construct on LPS stimulation; instead, the IRAK2 protein stability was reduced considerably. The results further show that the LPS-induced effect on the stability of IRAK2 is dependent of IRAK4 stimulation.

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Source
http://dx.doi.org/10.1007/s12033-018-0064-9DOI Listing

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