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1.
肿瘤表观基因组学研究进展   总被引:1,自引:1,他引:0  
多年来遗传学改变一直是肿瘤研究的焦点,近来人们越来越认识到异常表观遗传修饰在肿瘤形成中所起的重要作用。表观遗传修饰包括DNA甲基化、组蛋白修饰等,其变异会导致基因转录异常。表观基因组学是在基因组水平上对表观遗传学改变的研究。文章主要介绍目前已知的肿瘤表观基因组学相关内容,阐述表观遗传修饰与肿瘤的紧密关系及异常表观遗传修饰作为生物标记在肿瘤诊断、预后及治疗方面的最新研究进展。  相似文献   

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长期以来人们一直认为基因突变或缺失参与肿瘤的形成,近年来越来越多证据表明,表观遗传修饰在肿瘤进展中同样具有非常重要的作用。DNA甲基化、组蛋白修饰及micro RNA表达调控等表观遗传机制是子宫内膜癌发生、发展的重要原因之一。表观遗传学的研究进展不仅有助于子宫内膜癌的早期诊断,对分子靶向治疗子宫内膜癌亦显示出良好的应用前景。  相似文献   

4.
徐铮  林嘉盈  凌定文  刘桂英 《生物磁学》2011,(18):3592-3594
长期以来人们一直认为基因突变或缺失参与肿瘤的形成,近年来越来越多证据表明,表观遗传修饰在肿瘤进展中同样具有非常重要的作用。DNA甲基化、组蛋白修饰及microRNA表达调控等表观遗传机制是子宫内膜癌发生、发展的重要原因之一。表观遗传学的研究进展不仅有助于子宫内膜癌的早期诊断,对分子靶向治疗子宫内膜癌亦显示出良好的应用前景。  相似文献   

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表观遗传学作为生命科学领域的研究热点之一,已有大量的研究证实表观遗传机制在肿瘤、自身免疫疾病等疾病中起着关键作用.表观遗传修饰在结核病中的研究刚刚起步,但已发现表观遗传修饰在结核分枝杆菌、宿主,以及结核分枝杆菌与宿主相互作用中均起着重要作用.表观遗传修饰能通过调控结核分枝杆菌基因表达或调控宿主表观基因组转录和免疫应答来影响结核分枝杆菌的生长和复制,进而影响结核病发生发展和转归.本文将对表观遗传修饰在结核分枝杆菌生长复制以及结核病发生发展中的作用进行综述,为寻找新的药物靶点、研发新型治疗策略提供科学依据.  相似文献   

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肿瘤发生和恶化转化过程中导致细胞的异常编程,并由此产生了肿瘤干细胞。肿瘤干细胞具有自我更新和可塑性潜能,是肿瘤起始、转移、耐药和复发的根源。因此,对肿瘤重编程和肿瘤干细胞的研究具有重大科学价值和临床意义。表观遗传调控在肿瘤重编程中发挥重要作用。染色质重塑复合物、组蛋白修饰和非编码RNA等表观遗传机制都参与了癌变重编程。这些表观遗传调控可以调控肿瘤干细胞的自我更新和分化形成新肿瘤的能力。表观遗传调控癌变重编程、肿瘤干细胞自我更新的调控以及针对肿瘤干细胞表观调控机制的靶向治疗等问题,已成为肿瘤生物学研究的重点。现就染色质重塑复合物、组蛋白修饰和非编码RNA对癌变重编程和肿瘤干细胞调控的研究进展进行了综述。  相似文献   

7.
黎伟  秦俊  汪晖  陈廖斌 《遗传》2018,40(2):104-115
表观遗传修饰异常见于人类的多种疾病(如肿瘤、老年性疾病、发育源性疾病等),影响着这些疾病的发生发展。已有的研究表明,异常表观遗传改变可以作为疾病状态和疾病预测的生物标志物。表观遗传修饰改变的可逆性和可控性也为疾病早期的预防和治疗提供了新策略。本文对DNA甲基化修饰、组蛋白共价修饰、非编码RNA等三种表观遗传方式在肿瘤、老年性疾病和发育源性疾病的研究,以及三者作为表遗传生物标志物在疾病早期诊断和治疗的应用展开介绍,以期为肿瘤、老年性和发育源性相关疾病的诊断与治疗提供借鉴和 参考。  相似文献   

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表观遗传调控基因的突变在许多肿瘤中都被发现,所造成后果主要体现在DNA启动子高甲基化、DNA广泛低甲基化、组蛋白和其相关修饰改变和染色质结构异常四个方面。使用表观遗传药物,如DNA甲基化酶抑制剂、组蛋白修饰酶抑制剂和其他表观遗传相关蛋白特异性的抑制剂,已成为肿瘤治疗的一种新途径。目前,表观遗传药物治疗在多种肿瘤中已取得明显的效果,许多表观遗传药物处于临床试验,部分已投入临床使用。因此,该文对肿瘤中突变的表观遗传基因相关表观遗传药物治疗的研究进展以及目前存在的问题进行简要综述。  相似文献   

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长链非编码RNA(lncRNA)是一类转录本长度大于200 nt的RNA分子,编码蛋白质的功能有限,但其功能多样且复杂。已有研究报道lncRNA与肿瘤的发展进程密切相关,lncRNA可以通过不同方式参与细胞内生物学进程的调控,是潜在的癌症调节因子,其中,调节表观遗传修饰水平是其影响癌症进程的主要手段;癌症发病过程中细胞内存在着不同程度的表观遗传修饰,其主要为包括甲基化、乙酰化、磷酸化、糖基化、泛素化等修饰方式在内的DNA修饰、RNA修饰以及蛋白质的翻译后修饰,在癌症的不同阶段其修饰的异常程度不同,从而影响肿瘤发生的生物学进程。研究表明,lncRNA可以通过自身修饰或参与其他生物大分子的表观遗传修饰进程参与癌症的发生发展。因此,回顾了lncRNA所参与的表观遗传修饰形式和lncRNA在表观遗传修饰方面所起到的作用,并概述了lncRNA通过影响表观遗传修饰水平从而调控癌症进程的方法。旨在总结癌症细胞内表观遗传修饰方面所涉及lncRNA的研究进展,为癌症诊断和治疗提供潜在的靶标和生物学标志物。  相似文献   

10.
与基因DNA序列发生变化一样,表观遗传畸变也是决定人类癌症发生的关键因素之一。最近,越来越多的研究发现,microRNAs参与调控表观遗传,并与表观遗传形成一个相互作用的复杂调控网络。已有研究表明,表观遗传修饰,如DAN甲基化和组蛋白修饰,能够影响microRNAs的表达;反过来,microRNAs也可通过靶向表观遗传的关键酶来调控表观遗传。对microRNAs和表观遗传之间的相互作用调控回路进行综述,重点阐明在人类癌症中表观遗传如何影响microRNAs表达及microRNAs又是如何控制表观遗传的,并对表观遗传和microRNAs相互调控的临床转化意义进行讨论。  相似文献   

11.
In the past few years, the paramount role of cancer stem cells (CSCs), in terms of cancer initiation, proliferation, metastasis, invasion and chemoresistance, has been revealed by accumulating studies. However, this level of cellular plasticity cannot be entirely explained by genetic mutations. Research on epigenetic modifications as a complementary explanation for the properties of CSCs has been increasing over the past several years. Notably, therapeutic strategies are currently being developed in an effort to reverse aberrant epigenetic alterations using specific chemical inhibitors. In this review, we summarize the current understanding of CSCs and their role in cancer progression, and provide an overview of epigenetic alterations seen in CSCs. Importantly, we focus on primary cancer therapies that target the epigenetic modification of CSCs by the use of specific chemical inhibitors, such as histone deacetylase (HDAC) inhibitors, DNA methyltransferase (DNMT) inhibitors and microRNA‐based (miRNA‐based) therapeutics.  相似文献   

12.
ABSTRACT: Cervical cancer (CC) is one of the most malignant tumors and the second or third most common type of cancer in women worldwide. The association between human papillomavirus (HPV) and CC is widely known and accepted (99.7% of cases). At present, the pathogenesis mechanisms of CC are not entirely clear. It has been shown that inactivation of tumor suppressor genes and activation of oncogenes play a significant role in carcinogenesis, caused by the genetic and epigenetic alterations. In the past, it was generally thought that genetic mutation was a key event of tumor pathogenesis, especially somatic mutation of tumor suppressor genes. With deeper understanding of tumors in recent years, increasing evidence has shown that epigenetic silencing of those genes, as a result of aberrant hypermethylation of CpG islands in promoters and histone modification, is essential to carcinogenesis and metastasis. The term epigenetics refers to heritable changes in gene expression caused by regulation mechanisms, other than changes in DNA sequence. Specific epigenetic processes include DNA methylation, chromotin remodeling, histone modification, and microRNA regulations. These alterations, in combination or individually, make it possible to establish the methylation profiles, histone modification maps, and expression profiles characteristic of this pathology, which become useful tools for screening, early detection, or prognostic markers in cervical cancer. This paper reviews recent epigenetics research progress in the CC study, and tries to depict the relationships between CC and DNA methylation, histone modification, as well as microRNA regulations.  相似文献   

13.
Epigenetic modifications are heritable variations in gene expression not encoded by the DNA sequence. According to reports, a large number of studies have been performed to characterize epigenetic modification during normal development and also in cancer. Epigenetics can be regarded more widely to contain all of the changes in expression of genes that make by adjusted interactions between the regulatory portions of DNA or messenger RNAs that lead to indirect variation in the DNA sequence. In the last decade, epigenetic modification importance in colorectal cancer (CRC) pathogenesis was demonstrated powerfully. Although developments in CRC therapy have been made in the last years, much work is required as it remains the second leading cause of cancer death. Nowadays, epigenetic programs and genetic change have pivotal roles in the CRC incidence as well as progression. While our knowledge about epigenetic mechanism in CRC is not comprehensive, selective histone modifications and resultant chromatin conformation together with DNA methylation most likely regulate CRC pathogenesis that involved genes expression. Undoubtedly, the advanced understanding of epigenetic-based gene expression regulation in the CRC is essential to make epigenetic drugs for CRC therapy. The major aim of this review is to deliver a summary of valuable results that represent evidence of principle for epigenetic-based therapeutic approaches employment in CRC with a focus on the advantages of epigenetic-based therapy in the inhibition of the CRC metastasis and proliferation.  相似文献   

14.
The processes that affect the activity of the genome in a heritable manner without changing its sequence are called epigenetic. Here we review the modes of epigenetic gene regulation, and describe their alterations in cancer. We show how these mechanisms are interdependent, and how they intersect with genetic mutations. We argue that epigenetic abnormalities can occur both as a cause, and as a consequence of cancer. Indeed, oncogenic transformation can deeply alter the epigenetic information contained in the pattern of DNA methylation or histone tail modification. Conversely, epigenetic dysfunctions can drive cellular transformation. We then touch on some practical consequences of the prominence of epigenetic alterations in cancer : increasing knowledge of this field has allowed the development of a new generation of diagnostic tools and therapeutic avenues. Finally we point out that epigenetic phenomena may act as sensors that link environmental conditions to cancer.  相似文献   

15.
癌表观遗传调控与癌症治疗   总被引:1,自引:0,他引:1  
基因功能与表达模式异常是癌症的主要特征.日益增多的研究表明,DNA甲基化(DNAmethylation)、组蛋白修饰(histone modification)、染色质重塑(chromatin remodeling)以及microRNAs 介导的基因沉默等表观遗传调控方式的异常与癌症的发生发展密切相关.阐明癌症发生发展...  相似文献   

16.
The genetic heritage for decades has been considered to respond only to gene promoters or suppressors, with specific roles for oncogenes or tumor-suppressor genes. Epigenetics is progressively attracting increasing interest because it has demonstrated the capacity of these regulatory processes to regulate the gene expression without modifying gene sequence. Several factors may influence epigenetics, such as lifestyles including food selection. A role for physical exercise is emerging in the epigenetic regulation of gene expression. In this review, we resume physiological and pathological implications of epigenetic modification induced by the physical activity (PA). Inflammation and cancer mechanisms, immune system, central nervous system, and the aging process receive benefits due to PA through epigenetic mechanisms. Thus, the modulation of epigenetic processes by physical exercise positively influences prevention, development, and the course of inflammatory and cancer diseases, as well as neurodegenerative illnesses. This growing field of studies gives rise to a new role for PA as an option in prevention strategies and to integrate pharmacological therapeutic treatments.  相似文献   

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