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Severe congenital neutropenia: new genes explain an old disease.

机译:严重的先天性中性粒细胞减少症:新基因解释了一种旧疾病。

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PURPOSE OF REVIEW: This review summarizes the recent advances in the diagnosis and molecular characterization of isolated and syndromal forms of severe congenital neutropenia. RECENT FINDINGS: It has become evident that severe congenital neutropenia comprises several genetically distinct entities. In 1999, mutations were identified in the neutrophil elastase gene ELA2. ELA2 mutations have been found in cyclic, sporadic and autosomal dominant neutropenia. Recently, homozygous mutations in the antiapoptotic gene HAX1 were found in patients with autosomal recessive severe congenital neutropenia. Ongoing linkage studies suggest that more and, as yet unidentified, genes may be involved in the pathophysiology of severe congenital neutropenia. In other patients, congenital neutropenia is not an isolated finding but is associated with other abnormalities, in particular, lymphoid immunodeficiency and pigmentation defects such as Chediak-Higashi syndrome, Griscelli syndrome type 2, Hermansky-Pudlak syndrome type2, or deficiency of the endosomal adaptor p14. The molecular identification of these disorders originating from mutations in lysosome (related) proteins has advanced our knowledge of intracellular protein trafficking. SUMMARY: Recent insights into the molecular etiology of severe congenital neutropenia provide the opportunity for a definitive genetic classification system. Based on this knowledge, disease-related risks may be recognized and optimized therapeutic options may become available.
机译:综述的目的:这篇综述总结了严重先天性中性粒细胞减少症的分离和综合征形式的诊断和分子表征的最新进展。最近的发现:明显的是,严重的先天性中性粒细胞减少症包括几个遗传上不同的实体。 1999年,在嗜中性粒细胞弹性蛋白酶基因ELA2中发现了突变。在周期性,偶发性和常染色体显性中性粒细胞减少症中发现了ELA2突变。最近,在常染色体隐性遗传性先天性中性粒细胞减少症患者中发现了抗凋亡基因HAX1的纯合突变。正在进行的连锁研究表明,严重的先天性中性粒细胞减少症的病理生理可能涉及更多且尚未确定的基因。在其他患者中,先天性中性粒细胞减少不是一个孤立的发现,而是与其他异常相关,特别是淋巴免疫缺陷和色素沉着缺陷,例如Chediak-Higashi综合征,Griscelli综合征2型,Hermansky-Pudlak综合征2型或内体衔接子不足第14章这些由溶酶体(相关)蛋白突变引起的疾病的分子鉴定,已经使我们对细胞内蛋白运输有了更深入的了解。摘要:对严重先天性中性粒细胞减少症的分子病因学的最新见识为确定的遗传分类系统提供了机会。基于该知识,可以认识到与疾病相关的风险,并且可以得到最佳的治疗选择。

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