Int Immunol 2007,
Xie, Chun; Patel, Rahul; Wu, Tianfu; Zhu, Jiankun; Henry, Tamika; Bhaskarabhatla, Madhavi; Samudrala, Renuka; Tus, Katalin; Gong, Yimei; Zhou, Hui; Wakeland, Edward K; Zhou, Xin J; Mohan, Chandra
Previous studies have demonstrated that the NZM2410/NZW 'z' allele of Sle1 on telomeric murine chromosome 1 led to lymphoproliferative autoimmunity, when acting in concert with the FAS(lpr) defect on the C57BL/6 background. The present report shows that the Sle1b sub-locus, harboring the NZM2410/NZW 'z' allele of SLAM, in epistasis with FAS(lpr), may be sufficient to induce lymphoproliferative autoimmunity. Disease in this simplified genetic model is accompanied by significant activation of the AKT signaling axis in both B- and T cells, as evidenced by increased phosphorylation of AKT, mTOR, 4EBP-1 and p70S6K, resulting from increased PI3K and reduced PTEN activity. In addition, blocking this axis using RAD001, an mTOR inhibitor, ameliorated lymphoproliferation and modulated serum IgG anti-nuclear auto-antibodies. Finally, mTOR inhibition also dampened signaling via parallel axes, including the MAPK and NFkB pathways. Hence, hypersignaling via the PI3K/AKT/mTOR axis appears to be an important mechanism underlying autoimmune lymphoproliferative disease, presenting itself as a potential target for therapeutic intervention.
Diseases/Pathways annotated by Medline MESH:
Autoimmune Diseases, Lymphoproliferative Disorders
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Text Mining Data
mTOR ⊣ RAD001: " In addition, blocking this axis using RAD001
, an mTOR
inhibitor , ameliorated lymphoproliferation and modulated serum IgG anti-nuclear auto-antibodies "
Manually curated Databases
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