Division of Hematology/Oncology, Northwestern University, Chicago, IL; and.
Children's Hospital of Philadelphia, Philadelphia, PA.
Blood. 2014 May 15;123(20):3080-8. doi: 10.1182/blood-2014-01-453167. Epub 2014 Mar 20.
Most heritable anemias are caused by mutations in genes encoding globins, red blood cell (RBC) membrane proteins, or enzymes in the glycolytic and hexose monophosphate shunt pathways. A less common class of genetic anemia is caused by mutations that alter the functions of erythroid transcription factors (TFs). Many TF mutations associated with heritable anemia cause truncations or amino acid substitutions, resulting in the production of functionally altered proteins. Characterization of these mutant proteins has provided insights into mechanisms of gene expression, hematopoietic development, and human disease. Mutations within promoter or enhancer regions that disrupt TF binding to essential erythroid genes also cause anemia and heritable variations in RBC traits, such as fetal hemoglobin content. Defining the latter may have important clinical implications for de-repressing fetal hemoglobin synthesis to treat sickle cell anemia and β thalassemia. Functionally important alterations in genes encoding TFs or their cognate cis elements are likely to occur more frequently than currently appreciated, a hypothesis that will soon be tested through ongoing genome-wide association studies and the rapidly expanding use of global genome sequencing for human diagnostics. Findings obtained through such studies of RBCs and associated diseases are likely generalizable to many human diseases and quantitative traits.
大多数遗传性贫血是由珠蛋白、红细胞(RBC)膜蛋白或糖酵解和己糖单磷酸旁路途径中的酶的基因编码突变引起的。一类不太常见的遗传性贫血是由改变红细胞转录因子(TF)功能的突变引起的。许多与遗传性贫血相关的 TF 突变导致截断或氨基酸取代,从而产生功能改变的蛋白质。这些突变蛋白的特征分析为基因表达、造血发育和人类疾病的机制提供了线索。位于启动子或增强子区域内的突变,如果破坏 TF 与必需的红细胞基因的结合,也会导致贫血和 RBC 特征的遗传性变异,例如胎儿血红蛋白含量。定义后者可能对解除胎儿血红蛋白合成的抑制以治疗镰状细胞贫血和β地中海贫血具有重要的临床意义。编码 TF 或其同源顺式元件的基因中的功能重要改变可能比目前认为的更频繁地发生,这一假设将很快通过正在进行的全基因组关联研究和全球基因组测序在人类诊断中的快速扩展得到验证。通过对 RBC 和相关疾病的这些研究获得的发现可能适用于许多人类疾病和数量性状。