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431.
O. A. Guryanova M. Makhanov A. A. Chenchik P. M. Chumakov E. I. Frolova 《Molecular Biology》2006,40(3):396-405
To obtain a whole genome library that suppresses the total diversity of human mRNAs, lentiviral vector constructs and a short hairpin RNA (shRNA) expression cassette were optimized. The optimization of the vector increased the virus titer in preparations by 15–20 times. A simple shRNA structure with a 21-bp stem proved to be the most effective. Lentivector-based shRNA expression constructs were obtained by using puro R, copGFP, or H-2K k as a selectable marker. The efficiency of the optimized library was demonstrated when screening for shRNAs reactivating the tumor suppressor p53 in HeLa cells. Cells carried a reporter construct ensuring p53-responsive synthesis of a fluorescent protein, which allowed selection of cells with reactivated p53 by flow cytometry. 相似文献
432.
Therapeutic small interfering RNAs (siRNAs) have attracted a lot of interest both in basic biomedical sciences as well as in translational medicine. Apart from their therapeutic efficacy adverse effects of siRNAs must be addressed. The generation of stable mRNA cleavage fragments and the translation of N-truncated proteins induced by antisense oligodeoxynucleotides (ASOs) have been reported. Similar to ASOs, siRNAs are considered to function via an antisense mechanism that promotes the cleavage of the target mRNA. To further investigate whether the stable mRNA cleavage fragments also occur in siRNA we constructed a short hairpin RNA (shRNA) expression plasmid, pshRNA794, containing the same sequence reported in experiments using ASOs which directly targeted the overlapping region of the pre-genomic mRNA (pgmRNA) and sub-genomic mRNA (sgmRNA) of duck hepatitis B virus (DHBV). The shRNA resulted in a 70.9% and 69.9% reduction of the DHBV mRNAs in LMH and HuH-7 cells, respectively. In addition a 70% inhibition of the DHBV DNA level was observed. Interestingly, 3′-mRNA cleavage fragments were detected in LMH but not in HuH-7 cells. Taken together, our findings demonstrate that the ASO sequence was also effective in siRNA. Importantly, our results provide direct evidence that stable 3′-mRNA fragments were generated by siRNA in cells with high levels of DHBV replication. Whether these can cause adverse RNAi effects needs to be explored further. 相似文献
433.
Homologues of the Na+/glucose cotransporter, the SGLT family, include sequences of mammalian, eubacterial, yeast, insect and nematode origin. The
cotransported substrates are sugars, inositol, proline, pantothenate, iodide, urea and undetermined solutes. It is reasonable
to expect that the SGLT family members share a similar or identical topology of membrane spanning elements, by virtue of their
common ancestry and similar coupling of solute transport to downhill sodium flux. Here we examine their membrane topologies
as deduced from diverse analyses of their primary sequences, and from their sequence correlations with the experimentally
determined topology of the human Na+/glucose cotransporter SGLT1. Our analyses indicate that all family members share a common core of 13 transmembrane helices,
but that some, like SGLT1 itself, have one additional span appended to the C-terminus, and still others, two. One bacterial
member incorporates an additional span at the N-terminus. Sequence comparisons indicative of common ancestry of the SGLT and
the [Na++ Cl−] transporter families are introduced, and evaluated in light of their topologies. New evidence concerning the previously
asserted common ancestry of SGLT1 and an N-acetylglucosamine permease of the bacterial phosphotransferase system is considered.
Finally, we analyze observations which lead us to conjecture that the experimental strategy most commonly employed to reveal
the topology of bacterial transporters (i.e., the fusion of reporter enzymes such as phoA alkaline phosphatase, beta-lactamase
or beta-galactosidase, to progressively C-truncated fragments of the transporter) has often instead so perturbed local topology
as to have entirely missed pairs of adjacent membrane spans.
Received: 18 May 1996 相似文献