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由GATA-1新突变引起的X连锁血小板减少症。

X-linked thrombocytopenia caused by a novel mutation of GATA-1.

作者信息

Mehaffey M G, Newton A L, Gandhi M J, Crossley M, Drachman J G

机构信息

Puget Sound Blood Center and Program, Seattle, WA 98104, USA.

出版信息

Blood. 2001 Nov 1;98(9):2681-8. doi: 10.1182/blood.v98.9.2681.

Abstract

A family with recessive X-linked thrombocytopenia affecting 4 males in 2 generations, characterized by macrothrombocytopenia, profound bleeding, and mild dyserythropoiesis, is described. Microsatellite linkage analysis identified a region of the X chromosome including the GATA-1 gene, which encodes a critical transcription factor involved in erythrocyte and megakaryocyte development. By sequencing the entire coding region of GATA-1, a 2-base mutation was detected that results in a single amino acid substitution (glycine 208 to serine) within a highly conserved portion of the N-terminal zinc finger domain. Restriction fragment length polymorphism confirmed that this novel mutation segregated with the affected males and female carrier. Although not required for DNA binding, Gly208 of GATA-1 is involved in direct interaction with Friend of GATA-1 (FOG), a cofactor required for normal megakaryocytic and erythroid development. These results demonstrate that the GATA-1-FOG interaction is partially disrupted by the mutation and that the greatest effect involves contact with the FOG zinc finger 9. These findings help describe a novel mutation of GATA-1 in humans as a cause of X-linked thrombocytopenia, and they confirm the vital role played by this transcription factor during in vivo megakaryocyte development.

摘要

本文描述了一个隐性X连锁血小板减少症家族,该家族两代中有4名男性患病,其特征为大血小板减少、严重出血和轻度红细胞生成异常。微卫星连锁分析确定了X染色体上一个包含GATA-1基因的区域,该基因编码一种参与红细胞和巨核细胞发育的关键转录因子。通过对GATA-1的整个编码区进行测序,检测到一个2碱基突变,该突变导致N端锌指结构域高度保守部分内的单个氨基酸替换(甘氨酸208变为丝氨酸)。限制性片段长度多态性证实,这种新突变与受影响的男性和女性携带者共分离。虽然GATA-1的甘氨酸208对于DNA结合不是必需的,但它参与了与GATA-1的Friend(FOG)的直接相互作用,FOG是正常巨核细胞和红细胞发育所需的一种辅助因子。这些结果表明,该突变部分破坏了GATA-1-FOG相互作用,且最大影响涉及与FOG锌指9的接触。这些发现有助于描述人类中一种作为X连锁血小板减少症病因的GATA-1新突变,并证实了该转录因子在体内巨核细胞发育过程中所起的重要作用。

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