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X-linked lymphoproliferative disease: genetics and biochemistry

机译:X连锁淋巴组织增生性疾病:遗传学和生物化学

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摘要

Primary immunodeficiencies comprise a broad group of disorders due to germline mutations in genes regulating lymphocyte development and function. One of these genes, DSHP (also known as SH2D1A, SAP), is mutated in X-linked lymphoproliferative syndrome (XLP), an inherited immunodeficiency characterized by increased susceptibility to primary Epstein-Barr virus (EBV) infection, hypogammaglobulinenia, and lymphoma. Expressed primarily in T and NK cells, DSHP consists of a single SH2 domain and short carboxyl-terminal tail. The presence of a single SH2 domain, without other functional motifs, suggests that DSHP may be a physiologic competitor of other SH2 domain-containing proteins whose binding to phosphotyrosine controls lymphocyte activation and/or function. DSHP binds to the cytoplasmic domains of CDw150 (Signaling Lymphocyte Activation Molecule, SLAM) and 2B4, and may regulate signals transmitted by these receptors in T and NK, cells, respectively. Unlike other SH2 domaincontaining proteins, DSHP associates with both phosphorylated and nonphosphorylated tyrosine residues, and crystallography studies have revealed novel properties of the DSHP SH2 domain. Future studies exploring the function of DSHP during lymphocyte proliferation and activation should improve our ability to diagnose and treat XLP and possibly other human diseases associated with EBV.
机译:由于调节淋巴细胞发育和功能的基因中的种系突变,原发性免疫缺陷包括广泛的疾病。这些基因之一DSHP(也称为SH2D1A,SAP)在X连锁淋巴组织增生综合症(XLP)中发生突变,这是一种遗传性免疫缺陷病,其特征是对原发性爱泼斯坦-巴尔病毒(EBV)感染,低血红蛋白尿症和淋巴瘤的易感性增强。 DSHP主要在T细胞和NK细胞中表达,由单个SH2结构域和短羧基末端尾巴组成。没有单个功能基序的单个SH2结构域的存在表明DSHP可能是其他含SH2结构域蛋白的生理竞争者,这些蛋白与磷酸酪氨酸的结合可控制淋巴细胞的激活和/或功能。 DSHP结合CDw150(信号淋巴细胞激活分子,SLAM)和2B4的胞质域,并可能分别调节这些受体在T细胞和NK细胞中传递的信号。与其他含有SH2结构域的蛋白质不同,DSHP与酪氨酸残基磷酸化和非磷酸化都相关联,晶体学研究表明DSHP SH2结构域具有新的特性。未来研究探索DSHP在淋巴细胞增殖和活化中的功能的研究应提高我们诊断和治疗XLP以及可能与EBV相关的其他人类疾病的能力。

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