Regulation of NKT cell development by SAP, the protein defective in XLP

被引:0
|
作者
Kim E Nichols
Jamie Hom
Shun-You Gong
Arupa Ganguly
Cindy S Ma
Jennifer L Cannons
Stuart G Tangye
Pamela L Schwartzberg
Gary A Koretzky
Paul L Stein
机构
[1] Pediatric Oncology,Department of Dermatology
[2] Wood,Department of Genetics
[3] 4th floor,Dermatology and Microbiology
[4] 3615 Civic Center Boulevard,Immunology, Ward 9
[5] Children's Hospital of Philadelphia,003
[6] Abramson Family Cancer Research Institute,undefined
[7] University of Pennsylvania,undefined
[8] BRB II/III,undefined
[9] Room 415,undefined
[10] 421 Curie Boulevard,undefined
[11] University of Pennsylvania School of Medicine,undefined
[12] 415 Curie Boulevard,undefined
[13] University of Pennsylvania School of Medicine,undefined
[14] 415 Curie Boulevard,undefined
[15] Centenary Institute of Cancer Medicine and Cell Biology,undefined
[16] Locked Bag #6,undefined
[17] National Human Genome Research Institute,undefined
[18] National Institutes of Health,undefined
[19] Building 49,undefined
[20] Room 4A38,undefined
[21] Pathology and Laboratory Medicine,undefined
[22] University of Pennsylvania School of Medicine,undefined
[23] 415 Curie Boulevard,undefined
[24] Northwestern University School of Medicine,undefined
来源
Nature Medicine | 2005年 / 11卷
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摘要
The adaptor molecule SAP is expressed in T lymphocytes and natural killer (NK) cells, where it regulates cytokine production and cytotoxicity1,2,3. Here, we show that SAP, encoded by the SH2D1A gene locus, also has a crucial role during the development of NKT cells, a lymphocyte subset with immunoregulatory functions in response to infection, cancer and autoimmune disease4. Following stimulation with the NKT cell–specific agonist α-galactosyl ceramide (αGC), Sh2d1a−/− splenocytes did not produce cytokines or activate other lymphoid lineages in an NKT cell–dependent manner. While evaluating the abnormalities in αGC-induced immune responses, we observed that Sh2d1a−/− animals lacked NKT cells in the thymus and peripheral organs. The defect in NKT cell ontogeny was hematopoietic cell autonomous and could be rescued by reconstitution of SAP expression within Sh2d1a−/− bone marrow cells. Seventeen individuals with X-linked lymphoproliferative disease (XLP), who harbored germline mutations in SH2D1A, also lacked NKT cells. Furthermore, a female XLP carrier showed completely skewed X chromosome inactivation within NKT cells, but not T or B cells. Thus, SAP is a crucial regulator of NKT cell ontogeny in humans and in mice. The absence of NKT cells may contribute to the phenotypes of SAP deficiency, including abnormal antiviral and antitumor immunity and hypogammaglobulinemia.
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页码:340 / 345
页数:5
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