Literature DB >> 23235109

DNA demethylation and histone H3K9 acetylation determine the active transcription of the NKG2D gene in human CD8+ T and NK cells.

Alba Fernández-Sánchez1, Aroa Baragaño Raneros, Reyes Carvajal Palao, Ana B Sanz, Alberto Ortiz, Francisco Ortega, Beatriz Suárez-Álvarez, Carlos López-Larrea.   

Abstract

The human activating receptor NKG2D is mainly expressed by NK, NKT, γδ T and CD8(+) T cells and, under certain conditions, by CD4(+) T cells. This receptor recognizes a diverse family of ligands (MICA, MICB and ULBPs 1-6) leading to the activation of effector cells and triggering the lysis of target cells. The NKG2D receptor-ligand system plays an important role in the immune response to infections, tumors, transplanted graft and autoantigens. Elucidation of the regulatory mechanisms of NKG2D is therefore essential for therapeutic purposes. In this study, we speculate whether epigenetic mechanisms, such as DNA methylation and histone acetylation, participate in NKG2D gene regulation in T lymphocytes and NK cells. DNA methylation in the NKG2D gene was observed in CD4(+) T lymphocytes and T cell lines (Jurkat and HUT78), while this gene was unmethylated in NKG2D-positive cells (CD8(+) T lymphocytes, NK cells and NKL cell line) and associated with high levels of histone H3 lysine 9 acetylation (H3K9Ac). Treatment with the histone acetyltransferase (HAT) inhibitor curcumin reduces H3K9Ac levels in the NKG2D gene, downregulates NKG2D transcription and leads to a marked reduction in the lytic capacity of NKG2D-mediated NKL cells. These findings suggest that differential NKG2D expression in the different cell subsets is regulated by epigenetic mechanisms and that its modulation by epigenetic treatments might provide a new strategy for treating several pathologies.

Entities:  

Keywords:  DNA methylation; H3K9 acetylation; KLRK1gene; NKG2D receptor; curcumin; cytotoxicity

Mesh:

Substances:

Year:  2012        PMID: 23235109      PMCID: PMC3549882          DOI: 10.4161/epi.23115

Source DB:  PubMed          Journal:  Epigenetics        ISSN: 1559-2294            Impact factor:   4.528


  54 in total

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Authors:  Ellen N Kersh; David R Fitzpatrick; Kaja Murali-Krishna; John Shires; Samuel H Speck; Jeremy M Boss; Rafi Ahmed
Journal:  J Immunol       Date:  2006-04-01       Impact factor: 5.422

2.  Demethylating treatment suppresses natural killer cell cytolytic activity.

Authors:  Xiao-ning Gao; Ji Lin; Li-li Wang; Li Yu
Journal:  Mol Immunol       Date:  2009-04-25       Impact factor: 4.407

Review 3.  Hypomethylating agents and other novel strategies in myelodysplastic syndromes.

Authors:  Guillermo Garcia-Manero; Pierre Fenaux
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4.  Inhibition of NKG2D expression in NK cells by cytokines secreted in response to human cytomegalovirus infection.

Authors:  Aura Muntasell; Giuliana Magri; Daniela Pende; Ana Angulo; Miguel López-Botet
Journal:  Blood       Date:  2010-04-14       Impact factor: 22.113

5.  Engagement of NK receptor NKG2D, but not 2B4, results in self-reactive CD8+ T cells and autoimmune vitiligo.

Authors:  Andrew Zloza; Gretchen E Lyons; Lukasz K Chlewicki; Frederick J Kohlhapp; Jeremy A O'Sullivan; Andrew T Lacek; Tamson V Moore; Michael C Jagoda; Vinay Kumar; José A Guevara-Patiño
Journal:  Autoimmunity       Date:  2011-09-13       Impact factor: 2.815

6.  Human microRNA-1245 down-regulates the NKG2D receptor in natural killer cells and impairs NKG2D-mediated functions.

Authors:  J Luis Espinoza; Akiyoshi Takami; Katsuji Yoshioka; Katsuya Nakata; Tokiharu Sato; Yoshihito Kasahara; Shinji Nakao
Journal:  Haematologica       Date:  2012-04-04       Impact factor: 9.941

7.  Assay of T- and NK-cell subsets and the expression of NKG2A and NKG2D in patients with new-onset systemic lupus erythematosus.

Authors:  Wen-Xian Li; Hai-Feng Pan; Jian-Li Hu; Chang-Zhong Wang; Ning Zhang; Jing Li; Xiang-Pei Li; Jian-Hua Xu; Dong-Qing Ye
Journal:  Clin Rheumatol       Date:  2009-12-10       Impact factor: 2.980

Review 8.  TNK cells (NKG2D+ CD8+ or CD4+ T lymphocytes) in the control of human tumors.

Authors:  Cristina Maccalli; Samantha Scaramuzza; Giorgio Parmiani
Journal:  Cancer Immunol Immunother       Date:  2008-12-17       Impact factor: 6.968

9.  ULBP6/RAET1L is an additional human NKG2D ligand.

Authors:  Robert A Eagle; James A Traherne; James R Hair; Insiya Jafferji; John Trowsdale
Journal:  Eur J Immunol       Date:  2009-11       Impact factor: 5.532

10.  NKG2D blockade prevents autoimmune diabetes in NOD mice.

Authors:  Kouetsu Ogasawara; Jessica A Hamerman; Lauren R Ehrlich; Helene Bour-Jordan; Pere Santamaria; Jeffrey A Bluestone; Lewis L Lanier
Journal:  Immunity       Date:  2004-06       Impact factor: 31.745

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  20 in total

1.  γδ T cells and epigenetic drugs: A useful merger in cancer immunotherapy?

Authors:  Jaydeep Bhat; Dieter Kabelitz
Journal:  Oncoimmunology       Date:  2015-04-28       Impact factor: 8.110

Review 2.  An overview of epigenetics in Chinese medicine researches.

Authors:  Xue-Qing Hu; Shi-Bing Su
Journal:  Chin J Integr Med       Date:  2016-12-20       Impact factor: 1.978

3.  Abnormal histone acetylation of CD8+ T cells in patients with severe aplastic anemia.

Authors:  Weiwei Qi; Li Yan; Chunyan Liu; Rong Fu; Huaquan Wang; Zonghong Shao
Journal:  Int J Hematol       Date:  2016-08-02       Impact factor: 2.490

4.  H3K9ac involved in the decondensation of spermatozoal nuclei during spermatogenesis in Chinese mitten crab Eriocheir sinensis.

Authors:  Genliang Li; Xianjiang Kang; Shumei Mu; Mingshen Guo; Shiwen Huang; Qinna Chen; Song Nong; Xiaomin Huang; Hongliu Hu; Ke Sun
Journal:  Cytotechnology       Date:  2016-11-28       Impact factor: 2.058

5.  Srebp-controlled glucose metabolism is essential for NK cell functional responses.

Authors:  Nadine Assmann; Katie L O'Brien; Raymond P Donnelly; Lydia Dyck; Vanessa Zaiatz-Bittencourt; Róisín M Loftus; Paul Heinrich; Peter J Oefner; Lydia Lynch; Clair M Gardiner; Katja Dettmer; David K Finlay
Journal:  Nat Immunol       Date:  2017-09-18       Impact factor: 25.606

Review 6.  Immunological effects of hypomethylating agents.

Authors:  Katherine E Lindblad; Meghali Goswami; Christopher S Hourigan; Karolyn A Oetjen
Journal:  Expert Rev Hematol       Date:  2017-07-03       Impact factor: 2.929

7.  "Curcumin, the King of Spices": Epigenetic Regulatory Mechanisms in the Prevention of Cancer, Neurological, and Inflammatory Diseases.

Authors:  Sarandeep S S Boyanapalli; Ah-Ng. Tony Kong
Journal:  Curr Pharmacol Rep       Date:  2015-01-30

8.  Bone Marrow-Derived RIPK3 Mediates Kidney Inflammation in Acute Kidney Injury.

Authors:  Diego Martin-Sanchez; Juan Guerrero-Mauvecin; Miguel Fontecha-Barriuso; Nerea Mendez-Barbero; Maria Laura Saiz; Ana M Lopez-Diaz; Maria D Sanchez-Niño; Susana Carrasco; Pablo Cannata-Ortiz; Marta Ruiz-Ortega; Alberto Ortiz; Ana B Sanz
Journal:  J Am Soc Nephrol       Date:  2022-01-19       Impact factor: 10.121

Review 9.  Epigenetic modulation of the immune function: a potential target for tolerance.

Authors:  Beatriz Suárez-Álvarez; Aroa Baragaño Raneros; Francisco Ortega; Carlos López-Larrea
Journal:  Epigenetics       Date:  2013-06-17       Impact factor: 4.528

10.  Influence of in vitro IL-2 or IL-15 alone or in combination with Hsp-70-derived 14-mer peptide (TKD) on the expression of NK cell activatory and inhibitory receptors.

Authors:  Ilona Hromadnikova; Petra Pirkova; Lucie Sedlackova
Journal:  Mediators Inflamm       Date:  2013-02-17       Impact factor: 4.711

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