CREM variant rs1 7583959 conferred susceptibility to T1D risk in the Tunisian families
IMMUNOLOGY LETTERS
Authors: Zouidi, Ferjani; Bouzid, D.; Fourati, H.; Fakhfakh, R.; Kammoun, T.; Hachicha, M.; Penha-Goncalves, C.; Masmoudi, H.
Abstract
Type 1 diabetes mellitus (T1D) is a chronic autoimmune disease caused by the destruction of insulin producing pancreatic beta-cells by autoreactive T cells. Studies in animal models, such as the non-obese diabetic (NOD) mouse reveal that this disease is under the control of several genes that encode molecules implicated in regulation of transcription factors and in T cell activation. In order to underline the role of the genes involved in this regulation pathways, we investigated, using the Sequenom MassARRAY platform, 13 single-nucleotide polymorphisms (SNPs) belonging to CREM, IRF5, STAT4, and STAT5a/b genes in 59 T1 D Tunisian families. In the current study, we identified an association with rs17583959 (allele G; Z score = 2.27; p = 0.02; Genotype GG: score = 1.96; p = 0.04) of CREM gene. In LD analysis a strong LD between the 3 CREM variants (Block 1) was detected; rs2384352 was in complete LD with rs1148247. When haplotypes were constructed between CREM polymorphisms (rs1148247, rs17583959, rs2384352), AGA haplotype (H2) was significantly over-transmitted from parents to affected offspring (Z score = 2.988; P = 0.002) and may confer a risk for T1D disease. Whereas, AAG haplotype (H5) (Z score = -2.000; p = 0.045) was less transmitted than expected to affected children suggesting its protective effect against T1D pathology. No significant association in IRF5, STAT4, and STAT5a/b genes were observed. In conclusion, this study shows an eventually involvement of CREM gene in the development of T1D pathology in Tunisian families. These facts are consistent with a major role for transcription factor genes involved in the immune pathways in the control of autoimmunity. Further researches of association and functional analysis across populations are needed to confirm these findings. (C) 2016 European Federation of Immunological Societies. Published by Elsevier B.V. All rights reserved.
Diospyrin Modulates Inflammation in Poly I:C-Induced Macrophages via ER Stress-Induced Calcium-CHOP Pathway
PROCESSES
Authors: Kim, Hyun-Ju; Khan, Inamullah; Shahidullah, Adnan; Halimi, Syed Muhammad Ashhad; Rauf, Abdur; Lee, Ji-Young; Kim, Young-Jin; Kim, Bong-Youn; Park, Wansu
Abstract
Diospyrin, plant-derived bisnaphthoquinonoid, is known to have anticancer activity. However, pharmacological activity of diospyrin on viral infection is not well known. We investigated effects of diospyrin on macrophages induced by polyinosinic-polycytidylic acid (poly I:C), a mimic of double-stranded viral RNA. Various cytokines, intracellular calcium, nitric oxide (NO), phosphorylated p38 MAPK, and phosphorylated ERK1/2 as well as mRNA expressions of transcription factors were evaluated. Diospyrin significantly reduced NO production, granulocyte-macrophage colony-stimulating factor production, and intracellular calcium release in poly I:C-induced RAW 264.7. The phosphorylation of p38 MAPK and ERK1/2 was also significantly suppressed. Additionally, diospyrin inhibited mRNA levels of nitric oxide synthase 2, C/EBP homologous protein (CHOP), calcium/calmodulin dependent protein kinase II alpha, signal transducers and activators of transcription 1 (STAT1), STAT3, STAT4, Janus kinase 2, first apoptosis signal receptor, c-Jun, and c-Fos in poly I:C-induced RAW 264.7. Taken together, this study represents that diospyrin might have the inhibitory activity against viral inflammation such as excessive production of inflammatory mediators in poly I:C-induced RAW 264.7 via ER stress-induced calcium-CHOP pathway.