Unannotated single nucleotide polymorphisms in the TATA box of erythropoiesis genes show in vitro positive involvements in cognitive and mental disorders.

4区 医学 Q4 Medicine BMC Medical Genetics Pub Date : 2020-10-22 DOI:10.1186/s12881-020-01106-x
Mikhail Ponomarenko, Ekaterina Sharypova, Irina Drachkova, Irina Chadaeva, Olga Arkova, Olga Podkolodnaya, Petr Ponomarenko, Nikolay Kolchanov, Ludmila Savinkova
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引用次数: 4

Abstract

Background: Hemoglobin is a tetramer consisting of two α-chains and two β-chains of globin. Hereditary aberrations in the synthesis of one of the globin chains are at the root of thalassemia, one of the most prevalent monogenic diseases worldwide. In humans, in addition to α- and β-globins, embryonic zeta-globin and fetal γ-globin are expressed. Immediately after birth, the expression of fetal Aγ- and Gγ-globin ceases, and then adult β-globin is mostly expressed. It has been shown that in addition to erythroid cells, hemoglobin is widely expressed in nonerythroid cells including neurons of the cortex, hippocampus, and cerebellum in rodents; embryonic and adult brain neurons in mice; and mesencephalic dopaminergic brain cells in humans, mice, and rats. Lately, there is growing evidence that different forms of anemia (changes in the number and quality of blood cells) may be involved in (or may accompany) the pathogenesis of various cognitive and mental disorders, such as Alzheimer's and Parkinson's diseases, depression of various severity levels, bipolar disorders, and schizophrenia. Higher hemoglobin concentrations in the blood may lead to hyperviscosity, hypovolemia, and lung diseases, which may cause brain hypoxia and anomalies of brain function, which may also result in cognitive deficits.

Methods: In this study, a search for unannotated single-nucleotide polymorphisms (SNPs) of erythroid genes was initially performed using our previously created and published SNP-TATA_Z-tester, which is a Web service for computational analysis of a given SNP for in silico estimation of its influence on the affinity of TATA-binding protein (TBP) for TATA and TATA-like sequences. The obtained predictions were finally verified in vitro by an electrophoretic mobility shift assay (EMSA).

Results: On the basis of these experimental in vitro results and literature data, we studied TATA box SNPs influencing both human erythropoiesis and cognitive abilities. For instance, TBP-TATA affinity in the HbZ promoter decreases 6.6-fold as a result of a substitution in the TATA box (rs113180943), thereby possibly disrupting stage-dependent events of "switching" of hemoglobin genes and thus causing erythroblastosis. Therefore, rs113180943 may be a candidate marker of severe hemoglobinopathies with comorbid cognitive and mental disorders associated with cerebral blood flow disturbances.

Conclusions: The literature data and experimental and computations results suggest that the uncovered candidate SNP markers of erythropoiesis anomalies may also be studied in cohorts of patients with cognitive and/or mental disorders with comorbid erythropoiesis diseases in comparison to conventionally healthy volunteers. Research into the regulatory mechanisms by which the identified SNP markers contribute to the development of hemoglobinopathies and of the associated cognitive deficits will allow physicians not only to take timely and adequate measures against hemoglobinopathies but also to implement strategies preventing cognitive and mental disorders.

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红细胞生成基因TATA盒中未注释的单核苷酸多态性在体外表明与认知和精神障碍有积极的关系。
背景:血红蛋白是由两条α-链和两条β-链组成的四聚体。一种珠蛋白链合成中的遗传畸变是地中海贫血的根源,地中海贫血是世界上最普遍的单基因疾病之一。在人类中,除了α-珠蛋白和β-珠蛋白外,还表达胚胎泽塔珠蛋白和胎儿γ-珠蛋白。出生后,胎儿Aγ-和g γ-珠蛋白立即停止表达,成人β-珠蛋白则主要表达。研究表明,除红细胞外,血红蛋白在啮齿类动物的皮质、海马和小脑神经元等非红细胞中也广泛表达;小鼠胚胎和成年脑神经元;人类,小鼠和大鼠的中脑多巴胺能脑细胞。最近,越来越多的证据表明,不同形式的贫血(血细胞数量和质量的改变)可能参与(或伴随)各种认知和精神障碍的发病机制,如阿尔茨海默病和帕金森病、不同严重程度的抑郁症、双相情感障碍和精神分裂症。血液中较高的血红蛋白浓度可能导致高黏度、低血容量和肺部疾病,这可能导致脑缺氧和脑功能异常,也可能导致认知缺陷。方法:在本研究中,首先使用我们之前创建和发表的SNP- tata_z -tester进行红系基因的未注释单核苷酸多态性(SNP)搜索,这是一个用于计算分析给定SNP的Web服务,用于计算机估计其对TATA结合蛋白(TBP)对TATA和TATA样序列的亲和力的影响。得到的预测最终在体外通过电泳迁移迁移试验(EMSA)进行验证。结果:在这些体外实验结果和文献数据的基础上,我们研究了TATA box snp对人类红细胞生成和认知能力的影响。例如,由于TATA盒子(rs113180943)中的替换,HbZ启动子中的TBP-TATA亲和力降低了6.6倍,从而可能破坏血红蛋白基因“切换”的阶段依赖性事件,从而导致红细胞病。因此,rs113180943可能是与脑血流障碍相关的严重血红蛋白病伴认知和精神障碍的候选标志物。结论:文献数据以及实验和计算结果表明,与常规健康志愿者相比,发现的红细胞生成异常候选SNP标记也可以在伴有红细胞生成疾病的认知和/或精神障碍患者队列中进行研究。对已识别的SNP标记促进血红蛋白病和相关认知缺陷发展的调节机制的研究,将使医生不仅能够及时采取适当的措施对抗血红蛋白病,而且能够实施预防认知和精神障碍的策略。
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来源期刊
BMC Medical Genetics
BMC Medical Genetics 医学-遗传学
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审稿时长
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期刊介绍: BMC Medical Genetics is an open access journal publishing original peer-reviewed research articles in the effects of genetic variation in individuals, families and among populations in relation to human health and disease. Note: BMC Medical Genetics is now closed. This journal has merged with BMC Medical Genomics, a broad-scope, open access community journal for all medical genetics and genomics research.
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