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1.
Upstream sequences modulate the internal promoter of the human 7SL RNA gene   总被引:4,自引:0,他引:4  
E Ullu  A M Weiner 《Nature》1985,318(6044):371-374
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2.
Alu sequences are processed 7SL RNA genes   总被引:16,自引:0,他引:16  
E Ullu  C Tschudi 《Nature》1984,312(5990):171-172
7SL RNA is an abundant cytoplasmic RNA which functions in protein secretion as a component of the signal recognition particle. Alu sequences are the most abundant family of human and rodent middle repetitive DNA sequences (reviewed in ref. 2). The primary structure of human 7SL RNA consists of an Alu sequence interrupted by a 155-base pair (bp) sequence that is unique to 7SL RNA. In order to obtain information about the evolution of the Alu domain of 7SL RNA, we have determined the nucleotide sequence of a cDNA copy of Xenopus laevis 7SL RNA and of the 7SL RNA gene of Drosophila melanogaster. We find that the Xenopus sequence is 87% homologous with its human counterpart and the Drosophila 7SL RNA is 64% homologous to both the human and amphibian molecules. Despite the evolutionary distance between the species, significant blocks of homology to both the Alu and 7SL-specific portions of mammalian 7SL RNA can be found in the insect sequence. These results clearly demonstrate that the Alu sequence in 7SL RNA appeared in evolution before the mammalian radiation. We suggest that mammalian Alu sequences were derived from 7SL RNA (or DNA) by a deletion of the central 7SL-specific sequence, and are therefore processed 7SL RNA genes.  相似文献   

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Decay-accelerating factor (DAF), a glycoprotein that is anchored to the cell membrane by phosphatidylinositol, binds activated complement fragments C3b and C4b, thereby inhibiting amplification of the complement cascade on host cell membranes. Here, we report the molecular cloning of human DAF from HeLa cells. Analysis of DAF complementary DNAs revealed two classes of DAF messenger RNA, one apparently derived from the other by a splicing event that causes a coding frameshift near the C terminus. The apparent 'intron' sequence contains an Alu family member and encodes contiguous protein sequence. Two DAF proteins are therefore possible, having divergent C-terminal domains which differ in their hydrophobicity. Both mRNAs are found on polysomes, suggesting that both are translated. We propose that the major (90%) spliced DAF mRNA encodes membrane-bound DAF whereas the minor (10%) unspliced DAF mRNA may encode secreted DAF and we present expression data supporting this. The deduced DAF sequence contains four repeating units homologous to a consensus repeat found in a recently described family of complement proteins.  相似文献   

5.
Gong C  Maquat LE 《Nature》2011,470(7333):284-288
Staufen 1 (STAU1)-mediated messenger RNA decay (SMD) involves the degradation of translationally active mRNAs whose 3'-untranslated regions (3' UTRs) bind to STAU1, a protein that binds to double-stranded RNA. Earlier studies defined the STAU1-binding site within ADP-ribosylation factor 1 (ARF1) mRNA as a 19-base-pair stem with a 100-nucleotide apex. However, we were unable to identify comparable structures in the 3' UTRs of other targets of SMD. Here we show that STAU1-binding sites can be formed by imperfect base-pairing between an Alu element in the 3' UTR of an SMD target and another Alu element in a cytoplasmic, polyadenylated long non-coding RNA (lncRNA). An individual lncRNA can downregulate a subset of SMD targets, and distinct lncRNAs can downregulate the same SMD target. These are previously unappreciated functions of non-coding RNAs and Alu elements. Not all mRNAs that contain an Alu element in the 3' UTR are targeted for SMD even in the presence of a complementary lncRNA that targets other mRNAs for SMD. Most known trans-acting RNA effectors consist of fewer than 200 nucleotides, and these include small nucleolar RNAs and microRNAs. Our finding that the binding of STAU1 to mRNAs can be transactivated by lncRNAs uncovers an unexpected strategy that cells use to recruit proteins to mRNAs and mediate the decay of these mRNAs. We name these lncRNAs half-STAU1-binding site RNAs (1/2-sbsRNAs).  相似文献   

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8.
Conversion of RNA to DNA in mammals: Alu-like elements and pseudogenes   总被引:46,自引:0,他引:46  
P A Sharp 《Nature》1983,301(5900):471-472
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9.
10.
Transcription of the KpnI families of long interspersed DNAs in human cells   总被引:20,自引:0,他引:20  
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11.
12.
'Brain-specific' transcription and evolution of the identifier sequence   总被引:3,自引:0,他引:3  
C Sapienza  B St-Jacques 《Nature》1986,319(6052):418-420
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13.
mdr 1基因及其表达产物P-gp是引起肿瘤细胞多药耐药(MDR)的主要原因,抑制mdr 1基因的表达可用于逆转MDR.RNAi可用于特异抑制靶基因的表达,本研究的目的是构建获得可特异有效靶向mdr 1基因的siRNA元件.应用siRNA设计软件与mRNA结构分析软件设计构建了3个分别靶向mdr 1基因mRNA环结构和茎结构的siRNA元件,同时构建了携带mdr1基因序列的luc报告质粒,通过siRNA表达质粒与携带靶序列的报告质粒的共转染抑制实验检测不同siRNA的抑制效率,结果显示靶向环结构siMDR1B具有较好的抑制效率和特异性.进一步将siMDR1B表达载体与mdr1基因表达载体共转染细胞,应用免疫流式细胞术检测显示,相比对照细胞,siMDR1B可显著抑制其转染后mdr1基因产物P-gp蛋白的表达活性.同时采用CCK-8细胞活性检测试剂评价了siMDR1B对细胞活性的影响,结果显示siMDR1B不会影响细胞活性,具有良好的特异性.本研究获得的可有效靶向mdr 1基因的siRNA元件可为进一步开展逆转MDR研究提供重要基础.  相似文献   

14.
Weichenrieder O  Wild K  Strub K  Cusack S 《Nature》2000,408(6809):167-173
The Alu domain of the mammalian signal recognition particle (SRP) comprises the heterodimer of proteins SRP9 and SRP14 bound to the 5' and 3' terminal sequences of SRP RNA. It retards the ribosomal elongation of signal-peptide-containing proteins before their engagement with the translocation machinery in the endoplasmic reticulum. Here we report two crystal structures of the heterodimer SRP9/14 bound either to the 5' domain or to a construct containing both 5' and 3' domains. We present a model of the complete Alu domain that is consistent with extensive biochemical data. SRP9/14 binds strongly to the conserved core of the 5' domain, which forms a U-turn connecting two helical stacks. Reversible docking of the more weakly bound 3' domain might be functionally important in the mechanism of translational regulation. The Alu domain structure is probably conserved in other cytoplasmic ribonucleoprotein particles and retroposition intermediates containing SRP9/14-bound RNAs transcribed from Alu repeats or related elements in genomic DNA.  相似文献   

15.
The Y chromosome, which in man determines the male sex, is composed of two functionally distinct regions. The pseudoautosomal region is shared between the X and Y chromosome and is probably required for the correct segregation of the sex chromosomes during male meiosis. The second region includes the sex-determining gene(s), the presence of which is necessary for the development of testes. The two regions have contrasting genetic properties: the pseudoautosomal region recombines between the X and Y chromosome; the Y-specific region must avoid recombination otherwise the chromosomal basis of sex-determination breaks down. The pseudoautosomal region is bounded at the distal end by the telomere and at the proximal end by X- and Y-specific DNA. We have found that the proximal boundary was formed by the insertion of an Alu sequence on the Y chromosome early in the primate lineage. Proximal to the Alu insertion there is a small region where similarity between the X and Y chromosomes is reduced and which is no longer subject to recombination.  相似文献   

16.
低相关二元序列的应用领域非常广泛,在扩频通信、码分多址通信、全球定位系统和密码学中都有重要应用.应用m序列和其采样序列,构造了周期为2n-1的一簇新的二元序列,其中n为偶数.新的二元序列集的最大相关值为-1+2n/2+2n/2+1,并且它包含的二元序列的个数为2n/2+23n+2.该序列集包含了2个具有最优相关性的序列子集,其中之一为小集合的Kasami序列.提出的具有较多序列数目的低相关二元序列集可以用于码分多址通信系统.  相似文献   

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18.
Are U4 small nuclear ribonucleoproteins involved in polyadenylation?   总被引:2,自引:0,他引:2  
S M Berget 《Nature》1984,309(5964):179-182
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19.
设计了GF(q)上一类新型的广义自缩生成器。GF(q)上的广义自缩序列族B(a)具有群结构和线性结构,这些序列之间具有良好的互相关性和均衡性。当n≥2时,族B(a)中不少于(q-1)/q的序列具有最小周期2×qn-1,最后给出了各种情况下线性复杂度的上界。  相似文献   

20.
A J Mason  B A Evans  D R Cox  J Shine  R I Richards 《Nature》1983,303(5915):300-307
The glandular kallikrein gene family comprises 25-30 highly homologous genes that encode specific proteases involved in the processing of biologically active peptides. In the mouse all the members of this family are closely linked on chromosome 7. The 9.5-kilobase nucleotide sequence of a mouse genomic clone contains one complete kallikrein gene (mGK-1), which is expressed in the male mouse submaxillary gland, and the 3' end of another (mGK-2). Differences in the coding potential of these genes and the amino acid sequences of other known kallikreins seem to be functionally related to the substrate specificity of the different enzymes.  相似文献   

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