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Quantification of the Immunosuppressant Tacrolimus on Dried Blood Spots Using LC-MS/MS
Published on: November 8, 2015
Trans-Omic Analysis Identifies the 'PRMT1-STAT3-Integrin αVβ6 Axis' as a Novel Therapeutic Target in
Sho Nishida1,2, Tamaki Ishima1, Daiki Iwami2
1Department of Translational Research, Clinical Research Center, Jichi Medical University Hospital, Shimotsuke 329-0498, Japan.
Abstract:
Tacrolimus-induced chronic nephrotoxicity (TACN) represents a major barrier to long-term graft survival in kidney transplantation, yet its molecular pathogenesis remains incompletely understood. We have previously reported metabolic abnormalities, including carnitine deficiency, nicotinamide adenine dinucleotide depletion, and elevated asymmetric dimethyl arginine (ADMA), in TACN. To identify upstream regulators associated with these metabolic disturbances, we conducted a comprehensive trans-omic analysis, integrating transcriptomics and proteomics of kidney tissues from male ICR mice with TACN (n = 5/group). Differentially expressed genes and proteins were subjected to functional enrichment and transcription factor binding motif analyses, followed by upstream master regulator identification using the Genome Enhancer platform. A total of 785 genes and 2472 proteins were differentially expressed, with partially discordant regulation between transcriptomic and proteomic profiles, underscoring the limitations of single-omic approaches. Upstream analysis identified protein arginine methyltransferase-1 (PRMT1) and integrins, particularly αVβ6, as potential master regulators and therapeutic targets. PRMT1 is implicated in ADMA-mediated nitric oxide inhibition and fibrosis, whereas integrin αVβ6 is associated with tubular injury and renal fibrogenesis. Notably, PRMT1 may activate STAT3, which in turn regulates integrin β6 expression, suggesting a novel PRMT1-STAT3-integrin αVβ6 axis in TACN pathogenesis. This study represents the first trans-omic approach to TACN, providing a foundation for mechanistic validation and therapeutic exploration of PRMT1 and integrins in both preclinical and clinical settings.
Insights
This study reveals protein arginine methyltransferase-1 (PRMT1) and integrins as key regulators in tacrolimus-induced chronic nephrotoxicity (TACN). Targeting this novel PRMT1-STAT3-integrin αVβ6 axis may offer new therapeutic strategies for kidney transplant patients.
Area of Science:
- Nephrology
- Molecular Biology
- Transplantation Immunology
Background:
- Tacrolimus-induced chronic nephrotoxicity (TACN) impairs kidney transplant survival.
- Previous work identified metabolic disturbances like carnitine deficiency and elevated ADMA in TACN.
- The upstream molecular regulators of TACN pathogenesis are not fully understood.
Purpose of the Study:
- To identify upstream regulators of metabolic disturbances in TACN using a trans-omic approach.
- To explore potential therapeutic targets for mitigating TACN.
Main Methods:
- Integrated transcriptomic and proteomic analysis of kidney tissues from mice with TACN.
- Functional enrichment, transcription factor binding motif analysis, and master regulator identification using the Genome Enhancer platform.
- Investigated the PRMT1-STAT3-integrin αVβ6 axis.
Main Results:
- Identified 785 differentially expressed genes and 2472 differentially expressed proteins.
- Protein arginine methyltransferase-1 (PRMT1) and integrins (αVβ6) emerged as potential master regulators.
- A novel PRMT1-STAT3-integrin αVβ6 axis was proposed in TACN pathogenesis.
Conclusions:
- This trans-omic study provides novel insights into TACN molecular pathogenesis.
- PRMT1 and integrins represent promising therapeutic targets for TACN.
- The findings lay the groundwork for further mechanistic validation and therapeutic exploration in preclinical and clinical settings.
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