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1.
RBM15是一种RNA结合蛋白,参与到RNA的m6A修饰及可变剪接调控中.然而,RBM15在转录组水平如何调控可变剪接尚不清楚.本研究应用超分辨率荧光显微镜技术发现,RBM15在细胞核中形成斑点状结构,且与核斑有密切接触或完全定位于核斑中.核斑为细胞核中无膜细胞器,富含多种剪接因子,这提示RBM15可能参与到可变剪接的调控过程中.为了确定RBM15能否及如何调控可变剪接,我们利用siRNA敲低RBM15,并对敲低RBM15和野生型细胞进行二代测序.结果显示,敲低RBM15能够引起1 111个转录本中的1 279个可变剪接事件的变化.与已发表的RBM15-CLIP数据进行比较分析,我们发现,这1 111个转录本中,有191个能够与RBM15结合,提示这191个转录本可能为RBM15调控的直接靶标.进一步的分析表明,RBM15结合能够促进这191个转录本中的121个发生内含子或外显子的滞留.该研究揭示了RBM15在转录组水平调控可变剪接的规律.  相似文献   

2.
丙酮酸激酶是糖酵解的关键酶之一,丙酮酸激酶m基因前mRNA(pre-mRNA)通过可变剪接产生M1和M2型两种丙酮酸激酶异构体,2种异构体的选择性表达决定肿瘤细胞的代谢表型,改变肿瘤细胞的增殖和生长。因此,调控丙酮酸激酶可变剪接,对于控制肿瘤细胞的生长代谢十分重要。研究发现,核不均一核糖核蛋白(hnRNP)A1/A2及多聚嘧啶结合蛋白(PTB,又称hnRNPⅠ)具有调控丙酮酸激酶前mRNA可变剪接的作用,并且致癌转录因子c-Myc与hnRNP A1/A2及PTB在肿瘤细胞中的过表达密切相关。我们结合相关研究进展,简要综述丙酮酸激酶可变剪接调控机制。  相似文献   

3.
细胞通过基因表达调控来应对外界刺激,其中影响mRNA稳定性及翻译效率的转录后调控发挥重要作用。RNA结合蛋白(RNA binding proteins, RBPs)是介导转录后调控的重要分子,Sam68(SRC associated in mitosis of 68 kD)是集信号转导特性与RNA激活功能于一身的RNA结合蛋白,参与转录、可变剪接及核输出等mRNA 的代谢过程,且Sam68可通过信号通路参与细胞应答、细胞周期调控和疾病发生等。最新研究表明,Sam68可通过非编码RNAs(noncoding RNA, ncRNAs)参与表观遗传、转录与转录后调控。本文在介绍Sam68结构和转录后修饰的基础上,着重讨论Sam68在信号转导、可变剪接、ncRNAs代谢、疾病发生等方面的最新研究进展。  相似文献   

4.
核内不均一核糖核蛋白(hnRNP)是一类存在于真核生物体内具有类似结构特征的高丰度RNA结合蛋白,一般均匀分布在核内。多种hnRNP具有多样的功能,参与从转录调节,前体mRNA剪接,mRNA输出到mRNA降解等多种生物过程,从而进行基因表达调控。现着重介绍hnRNP在前体mRNA加工过程(加帽,剪接,加尾,输出,选择性降解)中的功能及研究进展。  相似文献   

5.
沈佳  张耀洲 《生命的化学》2007,27(3):221-223
真核生物通过mRNA前体的剪接,包括选择性剪接机制,调控着自身的生长与发育,了解其基本过程和有关参与因子,对进一步探索真核生物基因的表达调控和分子进化都具有极其重要的意义.该文简要综述了mRNA前体剪接的基本过程及有关剪接因子的最新研究进展,介绍了SR蛋白(Ser-Arg rich protein)家族因子、某些新发现的参与形成核不均一核糖核蛋白(heterogeneous nuclear ribonucleoprotein,hnRNP)的因子及部分:RNA解旋酶等在mRNA前体剪接过程中的功能和作用.  相似文献   

6.
RNA剪接是指从mRNA前体中去除内含子、连接外显子形成成熟mRNA的过程。由于选择不同的剪接位点,可变剪接控制着从单一前体mRNA生成多种成熟mRNA的过程,因此是真核生物中转录后调控基因表达和决定蛋白质多样性的重要层次。SR蛋白家族是参与调控可变剪接的一类重要的剪接因子。SRSF2是SR蛋白家族的一员,具有经典的SR蛋白结构域。SRSF2不仅能够调控可变剪接,还能调控基因的转录过程,在维持胸腺、骨髓等造血系统的正常发育以及维持肝脏代谢稳态中是非常关键的调控因子。大量的研究表明:SRSF2的突变与骨髓增生异常综合征等造血系统疾病密切相关。本文总结了SRSF2最近的研究进展,以期对SRSF2在体内的功能有更全面和深入的理解,并为相关疾病的研究和治疗提供一定的思路。  相似文献   

7.
核不均一核糖核蛋白(heterogeneous nuclear ribonucleoprotein,hnRNPs)是一组RNA结合蛋白,它们与人体健康密切相关,参与肿瘤发生、病毒感染、细胞凋亡等多种病理生理过程的调节.hnRNP U是其中分子量最大的磷酸化蛋白质,对基因的转录、定位和表达特别是性染色体的表观失活过程发挥着重要作用.hnRNP U多以DNA/RNA蛋白复合物形式参与细胞功能调节.  相似文献   

8.
环形RNA是一种广泛存在于真核细胞的内源性RNA,由前体RNA反向剪接而成,不具有5’末端帽子和3’末端poly(A)尾巴,呈封闭环状结构。环形RNA通过miRNA海绵结合等方式参与基因表达调控等许多重要的生物学过程。环形RNA可以通过可变剪接产生不同的环形RNA转录本,因此获取环形RNA转录本内部全长序列信息以及对环形RNA内部可变剪接产物进行精确定量是揭示环形RNA调控功能的前提。生物信息学工具能够高效便捷的处理高通量测序数据,被普遍用来鉴别和分析环形RNA。本文介绍了环形RNA的产生机制以及功能特性,对环形RNA检测、全长序列组装以及定量相关计算工具进行综述。  相似文献   

9.
可变剪接(alternative splicing) 是真核基因转录的普遍现象和重要调控方式,在生物体的各种生理过程中发挥着重要的作用。植物转录因子MADS box基因在植物生长发育中发挥重要作用。番茄(Solanum lycopersicum L.) SEPALLATA (SEP) 亚族基因Lemads1是1个在番茄果实成熟过程中具有关键作用的MADS box家族成员,但至今尚未见其转录剪接模式的详细报道。本研究发现,Lemads1基因在转录时存在可变剪接现象,并检测到4种Lemads1可变剪接转录本,其扩增长度依次为:699 bp、741 bp、1 404 bp和1 539 bp。剪接方式有外显子选择性切除和内含子保留两种。这4种转录本编码长度为232 aa、246 aa和266 aa的3种蛋白质。氨基酸序列比对和系统进化分析结果表明,这3种蛋白序列的差异主要集中在C区,但并不影响它们的系统进化地位。在进化上,它们仍属于SEP亚家族LOFSEP亚支中的FBP9/23分支,与它们亲缘关系最近的番茄SEP类蛋白是SLMBP21。Lemads1反义RNA转基因植株表型观察结果表明,该基因可能参与番茄果实成熟和萼片发育过程;而组织特异性表达分析表明,该基因的4种转录本具有相似但并不完全相同的表达模式,它们都在萼片和果实中高表达,但在这2个组织发育过程中的表达变化却有明显差异。暗示这些可变剪接转录本在萼片和果实发育过程中扮演了不同的角色。本研究提供了番茄Lemads1基因存在可变剪切的重要信息,对该基因功能的深度发掘具有指导意义。  相似文献   

10.
RNA结合蛋白(RNA binding proteins,RBPs)是一类通过其RNA结合结构域与RNA相互作用的蛋白质,在细胞内发挥着非常重要的作用。RBPs参与从RNA代谢(包括RNA的可变剪接、稳定性、翻译)到表观遗传修饰等多种调控途径。已有大量文献报道转录因子、表观遗传修饰和细胞外信号通路参与调控干细胞的多能性维持、分化和体细胞重编程,但对于RBPs在细胞命运转变中作用的研究报道甚少。该文主要综述了RBPs通过调控RNA的可变剪接、mRNA稳定性、翻译水平、microRNA代谢及组蛋白修饰进而调控干细胞多能性维持和体细胞重编程。  相似文献   

11.
Splicing of fibroblast growth factor receptor 2 (FGFR2) alternative exons IIIb and IIIc is regulated by the auxiliary RNA cis-element ISE/ISS-3 that promotes splicing of exon IIIb and silencing of exon IIIc. Using RNA affinity chromatography, we have identified heterogeneous nuclear ribonucleoprotein M (hnRNP M) as a splicing regulatory factor that binds to ISE/ISS-3 in a sequence-specific manner. Overexpression of hnRNP M promoted exon IIIc skipping in a cell line that normally includes it, and association of hnRNP M with ISE/ISS-3 was shown to contribute to this splicing regulatory function. Thus hnRNP M, along with other members of the hnRNP family of RNA-binding proteins, plays a combinatorial role in regulation of FGFR2 alternative splicing. We also determined that hnRNP M can affect the splicing of several other alternatively spliced exons. This activity of hnRNP M included the ability not only to induce exon skipping but also to promote exon inclusion. This is the first report demonstrating a role for this abundant hnRNP family member in alternative splicing in mammals and suggests that this protein may broadly contribute to the fidelity of splice site recognition and alternative splicing regulation.  相似文献   

12.
Activation of protein 4.1R exon 16 (E16) inclusion during erythropoiesis represents a physiologically important splicing switch that increases 4.1R affinity for spectrin and actin. Previous studies showed that negative regulation of E16 splicing is mediated by the binding of heterogeneous nuclear ribonucleoprotein (hnRNP) A/B proteins to silencer elements in the exon and that down-regulation of hnRNP A/B proteins in erythroblasts leads to activation of E16 inclusion. This article demonstrates that positive regulation of E16 splicing can be mediated by Fox-2 or Fox-1, two closely related splicing factors that possess identical RNA recognition motifs. SELEX experiments with human Fox-1 revealed highly selective binding to the hexamer UGCAUG. Both Fox-1 and Fox-2 were able to bind the conserved UGCAUG elements in the proximal intron downstream of E16, and both could activate E16 splicing in HeLa cell co-transfection assays in a UGCAUG-dependent manner. Conversely, knockdown of Fox-2 expression, achieved with two different siRNA sequences resulted in decreased E16 splicing. Moreover, immunoblot experiments demonstrate mouse erythroblasts express Fox-2. These findings suggest that Fox-2 is a physiological activator of E16 splicing in differentiating erythroid cells in vivo. Recent experiments show that UGCAUG is present in the proximal intron sequence of many tissue-specific alternative exons, and we propose that the Fox family of splicing enhancers plays an important role in alternative splicing switches during differentiation in metazoan organisms.  相似文献   

13.
hnRNP A1 is a pre-mRNA binding protein that antagonizes the alternative splicing activity of splicing factors SF2/ASF or SC35, causing activation of distal 5' splice sites. The structural requirements for hnRNP A1 function were determined by mutagenesis of recombinant human hnRNP A1. Two conserved Phe residues in the RNP-1 submotif of each of two RNA recognition motifs appear to be involved in specific RNA-protein interactions and are essential for modulating alternative splicing. These residues are not required for general pre-mRNA binding or RNA annealing activity. The C-terminal Gly-rich domain is necessary for alternative splicing activity, for stable RNA binding and for optimal RNA annealing activity. hnRNP A1B, which is an alternatively spliced isoform of hnRNP A1 with a longer Gly-rich domain, binds more strongly to pre-mRNA but has only limited alternative splicing activity. In contrast, hnRNP A2 and B1, which have 68% amino acid identity with hnRNP A1, bind more weakly to pre-mRNA and have stronger splice site switching activities than hnRNP A1. We propose that specific combinations of antagonistic hnRNP A/B and SR proteins are involved in regulating alternative splicing of distinct subsets of cellular premRNAs.  相似文献   

14.
Carcinoembryonic antigen-related cell adhesion molecule-1 (CEACAM1) is expressed in a variety of cell types and is implicated in carcinogenesis. Alternative splicing of CEACAM1 pre-mRNA generates two cytoplasmic domain splice variants characterized by the inclusion (L-isoform) or exclusion (S-isoform) of exon 7. Here we show that the alternative splicing of CEACAM1 pre-mRNA is regulated by novel cis elements residing in exon 7. We report the presence of three exon regulatory elements that lead to the inclusion or exclusion of exon 7 CEACAM1 mRNA in ZR75 breast cancer cells. Heterologous splicing reporter assays demonstrated that the maintenance of authentic alternative splicing mechanisms were independent of the CEACAM1 intron sequence context. We show that forced expression of these exon regulatory elements could alter CEACAM1 splicing in HEK-293 cells. Using RNA affinity chromatography, three members of the heterogeneous nuclear ribonucleoprotein family (hnRNP L, hnRNP A1, and hnRNP M) were identified. RNA immunoprecipitation of hnRNP L and hnRNP A1 revealed a binding motif located central and 3' to exon 7, respectively. Depletion of hnRNP A1 or L by RNAi in HEK-293 cells promoted exon 7 inclusion, whereas overexpression led to exclusion of the variable exon. By contrast, overexpression of hnRNP M showed exon 7 inclusion and production of CEACAM1-L mRNA. Finally, stress-induced cytoplasmic accumulation of hnRNP A1 in MDA-MB-468 cells dynamically alters the CEACAM1-S:CEACAM1:L ratio in favor of the l-isoform. Thus, we have elucidated the molecular factors that control the mechanism of splice-site recognition in the alternative splicing regulation of CEACAM1.  相似文献   

15.
16.
In this study we analyzed members of the heterogeneous nuclear ribonucleoprotein (hnRNP) H protein family to determine their RNA binding specificities and roles in splicing regulation. Our data indicate that hnRNPs H, H', F, 2H9, and GRSF-1 bind the consensus motif DGGGD (where D is U, G, or A) and aggregate in a multimeric complex. We analyzed the role of these proteins in the splicing of a substrate derived from the HIV-1 tat gene and have shown that hnRNP H family members are required for efficient splicing of this substrate. The hnRNP H protein family members activated splicing of the viral substrate by promoting the formation of ATP-dependent spliceosomal complexes. Mutational analysis of six consensus motifs present within the intron of the substrate indicated that only one of these motifs acts as an intronic splicing enhancer.  相似文献   

17.
Regulation of alternative pre-mRNA splicing by hnRNP A1 and splicing factor SF2.   总被引:119,自引:0,他引:119  
A Mayeda  A R Krainer 《Cell》1992,68(2):365-375
When messenger RNA precursors (pre-mRNAs) containing alternative 5' splice sites are spliced in vitro, the relative concentrations of the heterogeneous ribonucleoprotein (hnRNP) A1 and the essential splicing factor SF2 precisely determine which 5' splice site is selected. In general, an excess of hnRNP A1 favors distal 5' splice sites, whereas an excess of SF2 results in utilization of proximal 5' splice sites. The regulation of these antagonistic activities may play an important role in the tissue-specific and developmental control of gene expression by alternative splicing.  相似文献   

18.
19.
hnRNP A1 is a nucleocytoplasmic shuttling protein that is involved in many aspects of mRNA metabolism. We have previously shown that activation of the p38 stress-signaling pathway in mammalian cells results in both hyperphosphorylation and cytoplasmic accumulation of hnRNP A1, affecting alternative splicing regulation in vivo. Here we show that the stress-induced cytoplasmic accumulation of hnRNP A1 occurs in discrete phase-dense particles, the cytoplasmic stress granules (SGs). Interestingly, mRNA-binding activity is required for both phosphorylation of hnRNP A1 and localization to SGs. We also show that these effects are mediated by the Mnk1/2 protein kinases that act downstream of p38. Finally, depletion of hnRNP A1 affects the recovery of cells from stress, suggesting a physiologically significant role for hnRNP A1 in the stress response. Our data are consistent with a model whereby hnRNP A1 recruitment to SGs involves Mnk1/2-dependent phosphorylation of mRNA-bound hnRNP A1.  相似文献   

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