截短的促红细胞生成素受体导致显性遗传性良性人类红细胞增多症
Truncated erythropoietin receptor causes dominantly inherited benign human erythrocytosis
促红细胞生成素通过其受体调控红细胞的生成。研究人员在一个红细胞增多症呈常染色体显性遗传的大家族中,发现促红细胞生成素受体基因第 6002 位核苷酸发生 G 到 A 突变,使色氨酸密码子变为终止密码子,导致受体蛋白 C 端 70 个氨基酸被截短。该突变在 29 名患病家族成员中以杂合形式存在,并与疾病表型共分离,未患病成员和无关对照中均未发现。这似乎是首个人类促红细胞生成素受体突变致病案例,其表现与实验细胞系中类似截短受体的表型高度相似,提示该突变可能通过削弱受体的负调控结构域而激活信号。对促红细胞生成素受体基因的实验性改造最终可能有治疗应用。
为什么推荐给您:首次将促红细胞生成素受体突变与人类遗传病联系起来,属重要新发现,但仅一个家系、方法为常规测序。
不需要生物学背景,多打比方
正在获取全文并生成讲解(拿不到全文就依据摘要),大约需要 30–60 秒…
已等待 0 秒
这篇还没有动画
动画会把研究的流程、作用机制和关键结果一步一步演示出来,每一步都标明出自原文哪里。制作大约需要 30–60 秒。
摘要Abstract
Erythropoietin regulates the proliferation and differentiation of erythroid precursor cells. Its effect is mediated by the erythropoietin receptor (EPOR), a member of a large family of cytokine receptors. The EPOR gene has recently been cloned, sequenced, and characterized. As shown experimentally, its intracellular C-terminal part contains a domain exerting negative control on erythropoiesis. Here we describe a G to A transition in nucleotide 6002 of the EPOR gene that converts a TGG codon for tryptophan into a TAG stop codon, predicting the truncation of the 70 C-terminal amino acids of the EPOR molecule. The mutation occurs in heterozygous form in the germ-line DNA of members of a large kindred in which primary erythrocytosis is segregating as a mild autosomal dominant trait. The mutation cosegregates with the disease phenotype in all 29 affected family members studied; it occurs in no unaffected family members or unrelated controls. This appears to be an example of a human condition caused by an EPOR mutation. Striking similarities exist between the human phenotype described here and phenotypes of cell lines expressing similarly truncated EPOR molecules produced experimentally. By analogy with these in vitro studies, one can hypothesize that the truncated EPOR molecules are activated by suppression of phosphorylation leading to loss of the down-modulation exerted by intact EPOR molecules. Experimental modifications of the EPOR gene may eventually have therapeutic applications.