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Dicing the Disease with Dicer: The Implications of Dicer Ribonuclease in Human Pathologies

机译:用Dicer切割疾病:Dicer Ribonuclease在人类病理中的影响

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摘要

Gene expression dictates fundamental cellular processes and its de-regulation leads to pathological conditions. A key contributor to the fine-tuning of gene expression is Dicer, an RNA-binding protein (RBPs) that forms complexes and affects transcription by acting at the post-transcriptional level via the targeting of mRNAs by Dicer-produced small non-coding RNAs. This review aims to present the contribution of Dicer protein in a wide spectrum of human pathological conditions, including cancer, neurological, autoimmune, reproductive and cardiovascular diseases, as well as viral infections. Germline mutations of Dicer have been linked to Dicer1 syndrome, a rare genetic disorder that predisposes to the development of both benign and malignant tumors, but the exact correlation of Dicer protein expression within the different cancer types is unclear, and there are contradictions in the data. Downregulation of Dicer is related to Geographic atrophy (GA), a severe eye-disease that is a leading cause of blindness in industrialized countries, as well as to psychiatric and neurological diseases such as depression and Parkinson’s disease, respectively. Both loss and upregulation of Dicer protein expression is implicated in severe autoimmune disorders, including psoriasis, ankylosing spondylitis, rheumatoid arthritis, multiple sclerosis and autoimmune thyroid diseases. Loss of Dicer contributes to cardiovascular diseases and causes defective germ cell differentiation and reproductive system abnormalities in both sexes. Dicer can also act as a strong antiviral with a crucial role in RNA-based antiviral immunity. In conclusion, Dicer is an essential enzyme for the maintenance of physiology due to its pivotal role in several cellular processes, and its loss or aberrant expression contributes to the development of severe human diseases. Further exploitation is required for the development of novel, more effective Dicer-based diagnostic and therapeutic strategies, with the goal of new clinical benefits and better quality of life for patients.
机译:基因表达决定了基本细胞过程,其脱节导致病理条件。对基因表达的微调的关键因素是Dicer,一种形成复合物的RNA结合蛋白(RBP),通过Dicer制造的小非编码RNA通过靶向MRNA在转录后水平作用来影响转录。该审查旨在展示Dicer蛋白在广泛的人类病理条件下的贡献,包括癌症,神经系统,自身免疫,生殖和心血管疾病以及病毒感染。 Dicer的种系突变与Dicer1综合征有关,一种罕见的遗传症,易于发展良性和恶性肿瘤的发展,但不同癌症类型内的Dicer蛋白表达的确切相关性尚不清楚,数据中存在矛盾。 Dicer的下调与地理萎缩(GA),一种严重的眼疾病,是工业化国家失明的主要原因,以及精神病和神经疾病,如抑郁和帕金森病等疾病。 Dicer蛋白表达的损失和上调均涉及严重的自身免疫障碍,包括牛皮癣,强直性脊柱炎,类风湿性关节炎,多发性硬化和自身免疫性甲状腺疾病。 Dicer丧失有助于心血管疾病,并导致两性的缺陷细胞分化和生殖系统异常。 Dicer还可以作为强烈的抗病毒,在基于RNA的抗病毒免疫中的作用至关重要。总之,由于其在几种细胞过程中的关键作用,因此Dicer是维持生理学的基本酶,其损失或异常表达有助于发育严重的人类疾病。进一步的利用是开发新颖,更有效的DICER的诊断和治疗策略,目标是新的临床益处和更好的患者生活质量。

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