TLR Regulation of SPSB1 Controls Inducible Nitric Oxide Synthase Induction
JOURNAL OF IMMUNOLOGY
Authors: Lewis, Rowena S.; Kolesnik, Tatiana B.; Kuang, Zhihe; D'Cruz, Akshay A.; Blewitt, Marnie E.; Masters, Seth L.; Low, Andrew; Willson, Tracy; Norton, Raymond S.; Nicholson, Sandra E.
Abstract
The mammalian innate immune system has evolved to recognize foreign molecules derived from pathogens via the TLRs. TLR3 and TLR4 can signal via the TIR domain-containing adapter inducing IFN-beta (TRIF), which results in the transcription of a small array of genes, including IFN-beta. Inducible NO synthase (iNOS), which catalyzes the production of NO, is induced by a range of stimuli, including cytokines and microbes. NO is a potent source of reactive nitrogen species that play an important role in killing intracellular pathogens and forms a crucial component of host defense. We have recently identified iNOS as a target of the mammalian SPSB2 protein. The SOCS box is a peptide motif, which, in conjunction with elongins B and C, recruits cullin-5 and Rbx-2 to form an active E3 ubiquitin ligase complex. In this study, we show that SPSB1 is the only SPSB family member to be regulated by the same TLR pathways that induce iNOS expression and characterize the interaction between SPSB1 and iNOS. Through the use of SPSB1 transgenic mouse macrophages and short hairpin RNA knockdown of SPSB1, we show that SPSB1 controls both the induction of iNOS and the subsequent production of NO downstream of TLR3 and TLR4. Further, we demonstrate that regulation of iNOS by SPSB1 is dependent on the proteasome. These results suggest that SPSB1 acts through a negative-feedback loop that, together with SPSB2, controls the extent of iNOS induction and NO production. The Journal of Immunology, 2011, 187: 3798-3805.
F-19 NMR as a Probe of Ligand Interactions with the iNOS Binding site of SPRY Domain-Containing SOCS Box Protein 2
CHEMICAL BIOLOGY & DRUG DESIGN
Authors: Leung, Eleanor W. W.; Yagi, Hiromasa; Harjani, Jitendra R.; Mulcair, Mark D.; Scanlon, Martin J.; Baell, Jonathan B.; Norton, Raymond S.
Abstract
SPRY domain-containing SOCS box protein 2 (SPSB2) regulates inducible nitric oxide synthase (iNOS) by targeting it for proteasomal degradation. Inhibiting this interaction prolongs the intracellular lifetime of iNOS, leading in turn to enhanced killing of infectious pathogens such as bacteria and parasites. SPSB2 recognizes a linear motif (DINNN) in the disordered N-terminus of iNOS, and ligands that target the DINNN binding site on SPSB2 are potentially novel anti-infective agents. We have explored F-19 NMR as a means of probing ligand binding to SPSB2. All six Trp residues in SPSB2 were replaced with 5-fluorotryptophan (5-F-Trp) by utilizing a Trp auxotroph strain of Escherichia coli. The labeled protein was well folded and bound a DINNN-containing peptide with similar affinity to native SPSB2. Six well-resolved 5-F-Trp resonances were observed in the F-19 NMR spectrum and were assigned using site-directed mutagenesis. The F-19 resonance of W207 was significantly perturbed upon binding to DINNN-containing peptides. Other resonances were perturbed to a lesser extent although in a way that was sensitive to the composition of the peptide. Analogues of compounds identified in a fragment screen also perturbed the W207 resonance, confirming their binding to the iNOS peptide-binding site on SPSB2. F-19 NMR promises to be a valuable approach in developing inhibitors that bind to the DINNN binding site.