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AxCANCre

Recombinant adenovirus expressing recombinase Cre with nuclear localization signal

Catalog number RDB01748
Resource name AxCANCre
Alternative name
Clone info. Recombinant adenovirus expressing the recombinase Cre tagged with a nuclear localization signal under the control of CAG promoter.
Vector backbone pAxcw (Adenovirus)
Size of vector backbone -
Growth remarks 5 percent FCS is fine.
Gene/insert name P1 phage Cre recombinase cDNA
Depositor|Developer Saito, Izumu |
Other clones in our bank

External Database
P1 phage Cre recombinase

          Reference sequence
            
           
          Remarks, protocol and/or map (gif) RDB01748.gif

          Distribution information

          Please check terms and conditions set forth by the depositor, which are specified in the RIKEN BRC Catalog and/or Web Catalog.
          Terms and conditions for distribution In publishing the research results obtained by use of the BIOLOGICAL RESOURCE, a citation of literature designated by the DEPOSITOR is requested (Kanegae, Y., Nucleic Acids Res., 23, 3816-3821(1995)).
          Additional terms and conditions:
          Regarding resources containing CAG promoter: In publishing the research results obtained by use of the BIOLOGICAL RESOURCE, a citation for the CAG promoter (Niwa, H., Yamamura, K., Miyazaki, J., Gene 108 : 193-200, 1991) and an acknowledgment to Dr. Jun-ich Miyazaki of the Osaka University are requested.
          Ordering Please visit Information of Request for Distribution.[link] For for-profit-research purpose, please contact us. 
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          Material Transfer Agreement (MTA for use for not-for-profit academic purpose) [Word]
          提供案内 (日本国内) [open/close]

          提供条件 利用者は、研究成果の公表にあたって寄託者の指定する文献を引用する (Kanegae, Y., Nucleic Acids Res., 23, 3816-3821(1995))。
          付加的提供条件:
          CAGプロモータを含むリソースについて: 利用者は、研究成果の公表にあたってCAGプロモータの文献 (Niwa, H., Yamamura, K., Miyazaki, J., Gene 108 : 193-200, 1991)を引用し、大阪大学 宮崎純一博士への謝辞の表明を必要とする。
          提供依頼 手続きの詳細は、「提供申込みについて[link]」をご覧ください。営利目的利用についてはお問い合わせください。
          提供依頼書 [Word]
          提供同意書 (MTA、非営利機関による非営利学術研究用)[Word]
          遺伝子組換え生物の受入れ確認書 [Word]
          備考 【追加提供依頼書】受入れ確認書(書式J)
          組換え体提供にかかる書式が必要です。

          Catalog # Resource name Shipping form Fee (non-profit org.)
          RDB01748 AxCANCre Virus, lysate of infected cell culture

          Please review the QC test results indicated by check icon below as well as clone information before placing your order.

          How to cite this biological resource

          Materials & Methods section:

          The AxCANCre was provided by the RIKEN BRC through the National BioResource Project of the MEXT, Japan (cat. RDB01748).

          Reference section:

          Kanegae, Y., Takamori, K., Sato, Y., Lee, G., Nakai, M., Saito, I., Efficient gene activation system on mammalian cell chromosomes using recombinant adenovirus producing Cre recombinase. Gene, 181, 207-212 (1996). PMID 8973332.
          Kanegae, Y., Lee, G., Sato, Y., Tanaka, M., Nakai, M., Sakaki, T., Sugano, S., Saito, I., Efficient gene activation in mammalian cells by using recombinant adenovirus expressing site-specific Cre recombinase. Nucleic Acids Res., 23, 3816-3821 (1995). PMID 7479022.

          Further references such as user reports and related articles (go to bottom)


          References and tips

          Featured content

          Featured content Dnaconda's recommendation EXR0066e (English text)
          Featured content Dnaconda's recommendation EXR0066j (Japanese text)
          Featured content Expression regulation (English text)

          QC test results

          RIKEN BRC has sequenced portions of this material for quality test.
          Please review the QC test results indicated by check icon as well as clone information before placing your order.

          Test sheet RDB01748_020904p2-1.pdf check

          Nucleotide sequence of a portion of this resource (if available).

          Primer: pCAG-F ()
          Sequence file: RDB01748_020904a.seq check
          >01748_01748_A6C4_2_pCAG-F_B01_02_ABI08.ab1
              1 GCTGGGGGGG AAAGCTGCCT TCGGGGGGGA GGGGCAGGGC GGGGTTCGGC TTCTGGCGTG
             61 TGACCGGCGG CTCTAGAGCC TCTGCTAACC ATGTTCATGC CTTCTTCTTT TTCCTACAGC
            121 TCCTGGGCAA CGTGCTGGTT ATTGTGCTGT CTCATCATTT TGGCAAAGAA TTGATTTATC
            181 GATTTGCAGA CCGTGCATCA TGAGCGGCCC TCCAAAAAAG AAGAGAAAGG TAGAAGACCC
            241 GGGCGGCCGC ATGTCCAATT TACTGACCGT ACACCAAAAT TTGCCTGCAT TACCGGTCGA
            301 TGCAACGAGT GATGAGGTTC GCAAGAACCT GATGGACATG TTCAGGGATC GCCAGGCGTT
            361 TTCTGAGCAT ACCTGGAAAA TGCTTCTGTC CGTTTGCCGG TCGTGGGCGG CATGGTGCAA
            421 GTTGAATAAC CGGAAATGGT TTCCCGCAGA ACCTGAAGAT GTTCGCGATT ATCTTCTATA
            481 TCTTCAGGCG CGCGGTCTGG CAGTAAAAAC TATCCAGCAA CATTTGGGCC AGCTAAACAT
            541 GCTTCATCGT CGGTCCGGGC TGCCACGACC AAGTGACAGC AATGCTGTTT CACTGGTTAT
            601 GCGGCGGATC CGAAAAGAAA ACGTTGATGC CGGTGAACGT GCAAAACAGG CTCTAGCGTT
            661 CGAACGCACT GATTTCGACC AGGTTCGTTC ACTCATGGAA AATAGCGATC GCTGCCAGGA
            721 TATACGTAAT CTGGCATTTC TGGGGATTGC TTATAACACC CTGTTACGTA TAGCCGAAAT
            781 TGCCAGGATC AGGGTTAAAG ATATCTCACG TACTGACGGT GGGAGAATGT TAATCCATAT
            841 TGGCAGAACG AAAACGCTGG TTAGCACCGC AGTGTAGAGA AGGCACTTAG CCTGGGGGGT
            901 AACTAAACTG GTCGAGCGAT GGATTTCCGT CTCTGGTGTA GCTGATGATC CGAATAACTA
            961 CCCTGTTTTG CTGATCAGAA AAAAATGGGT GTTTGCCCGC GCCATCTGCC ACAGCCCAGG
           1021 CTATCCACTT CGCGCCCCTG GGAAAGGATT TTGGAGGCCA ACTCATCCGA ATTGGATTAC
          1081 GCGCTAGAAT GACTCTGGTT CAGGAGATAC CTGTGGTC
          //
          Primer: pAxcwit2_Rv ()
          Sequence file: RDB01748_020904b.seq check
          >01748_01748_A6C4-7_3_pAxcwit2_Rv_B02_05_ABI24.ab1
              1 TTGGGCACTG CATAGAAGAG TGAATCTGAA TAATTTTGTG TTACTCATAG CGCGTAATAT
             61 TTGTCTAGGG CCGCGGGGAC TTTGACCGTT TACGTGGAGA CTCGCCCAGG TGTTTTTCTC
            121 AGGTGTTTTC CGCGTTCCGG GTCAAAGTTG GCGTTTTATT ATTATAGTCA GCATCGTTTA
            181 AACAGCTTGG GCCCTCGAGG GGTCGAGGGA TCTCCATAAG AGAAGAGGGA CAGCTATGAC
            241 TGGGAGTAGT CAGGAGAGGA GGAAAAATCT GGCTAGTAAA ACATGTAAGG AAAATTTTAG
            301 GGATGTTAAA GAAAAAAATA ACACAAAACA AAATATAAAA AAAATCTAAC CTCAAGTCAA
            361 GGCTTTTCTA TGGAATAAGG AATGGACAGC AGGGGGCTGT TTCATATACT GATGACCTCT
            421 TTATAGCCAA CCTTTGTTCA TGGCAGCCAG CATATGGGCA TATGTTGCCA AACTCTAAAC
            481 CAAATACTCA TTCTGATGTT TTAAATGATT TGCCCTCCCA TATGTCCTTC CGAGTGAGAG
            541 ACACAAAAAA TTCCAACACA CTATTGCAAT GAAAATAAAT TTCCTTTATT AGCCAGAAGT
            601 CAGATGCTCA AGGGGCTTCA TGATGTCCCC ATAATTTTTG GCAGAGGGAA AAAGATCTCA
            661 GTGGTATTTG TGAGCCAGGG CATTGGCCAC ACCAGCCACC ACCTTCTGAT AGGCAGCCTG
            721 CACCTGAGGA GTGAATTGAT TATCGATTCT AGACTAGTTT AATTAATTTC TAGAGCGCTT
            781 AATGGCTAAT CGCCATCTTC CAGCAGGCGC ACCATTGCCC CTGTTTCACT ATCCAGGTTA
            841 CGGATATAGT TCATGACAAT ATTTACATTG GTCCAGCCAC CAGCTTGCAT GATCTCCGGT
            901 ATTGAAACTC CAGCGCGGGC CATATCTCGC GCGGCTCCGA CACGGGCACT GTGTCCAGAC
            961 CAGGCCAGGT ATCTCTGACC AGAGTCATCC TTAGCGCCGT AAATCAATCG ATGAGTTGCT
           1021 TCAAAAATCC CTTCCAGGCG CGAGTTTGAT AGCTGGCTGG GTGGCAGATG GCGCGGCAAC
           1081 ACCATTTTTT CCTGAACTCG CAAACAGTTA GGTTATTCGG ATCATCCAGG CCTTAACAAC
          1141 CCAGGACAG
          //
          Primer: pAxCA_R1 ()
          Sequence file: RDB01748_020904c.seq check
          >01748_01748_A6C4_2_pAxCA_R1_A01_01_ABI08.ab1
              1 TTTTGGAAAG CCATTGGCCA CACCAGCCAC CACCTTCTGA TAGGCAGCCT GCACCTGAGG
             61 AGTGAATTGA TTATCGATTC TAGACTAGTT TAATTAATTT CTAGAGCGCT TAATGGCTAA
            121 TCGCCATCTT CCAGCAGGCG CACCATTGCC CCTGTTTCAC TATCCAGGTT ACGGATATAG
            181 TTCATGACAA TATTTACATT GGTCCAGCCA CCAGCTTGCA TGATCTCCGG TATTGAAACT
            241 CCAGCGCGGG CCATATCTCG CGCGGCTCCG ACACGGGCAC TGTGTCCAGA CCAGGCCAGG
            301 TATCTCTGAC CAGAGTCATC CTTAGCGCCG TAAATCAATC GATGAGTTGC TTCAAAAATC
            361 CCTTCCAGGG CGCGAGTTGA TAGCTGGCTG GTGGCAGATG GCGCGGCAAC ACCATTTTTT
            421 CTGACCCGGC AAAACAGGTA GTTATTCGGA TCATCAGCTA CACCAGAGAC GGAAATCCAT
            481 CGCTCGACCA GTTTAGTTAC CCCCAGGCTA AGTGCCTTCT CTACACCTGC GGTGCTAACC
            541 AGCGTTTTCG TTCTGCCAAT ATGGATTAAC ATTCTCCCAC CGTCAGTACG TGAGATATCT
            601 TTAACCCTGA TCCTGGCAAT TTCGGCTATA CGTAACAGGG TGTTATAAGC AATCCCCAGA
            661 AATGCCAGAT TACGTATATC CTGGCAGCGA TCGCTATTTT CCATGAGTGA ACGAACCTGG
            721 TCGAAATCAG TGCGTTCGAA CGCTAGAGCC TGTTTTGCAC GTTCACCGGC ATCAACGTTT
            781 TCTTTTCGGA TCCGCCGCAT AACCAGTGAA ACAGCATTGC TGTCACTTGG TCGTGGCAGC
            841 CCGGACCGAC GATGAAGCAT GTTTAGCTGG CCCAAATGTT GCTGGGATAG TTTTTTACTG
            901 CCAGACCGCG CGCCTGAAGA TATAGGAAGA TAATCGCGAA CATCTTTCAG GTTCTGCGGG
            961 AAACCCATTT CCCGGTTATT CAACTTTGCA CCATGCCGCC ACGACCGGGC AAAACGGACA
           1021 GAGGCATTTT CCAGTAATGC TTCAGAAACC GCCTTGGCCG AATCCCTGGA CCATGGTCAT
          1081 TCAGTCTGCG ACCTCATCAA CTCGATTG
          //
          Primer: CMV_en_R ()
          Sequence file: RDB01748_020904d.seq check
          >01748_01748_A6C4-7_3_CMV_en_R_C01_03_ABI08.ab1
              1 TCGTGGAATT ACTATTAATA ACTAGTCAAT AATCAATGTC GACATCGGTT TAAACGATTG
             61 TCGACTCGCG ACGATGGATC TGGAAGGTGC TGAGGTACGA TGAGACCCGC ACCAGGTGCA
            121 GACCCTGCGA GTGTGGCGGT AAACATATTA GGAACCAGCC TGTGATGCTG GATGTGACCG
            181 AGGAGCTGAG GCCCGATCAC TTGGTGCTGG CCTGCACCCG CGCTGAGTTT GGCTCTAGCG
            241 ATGAAGATAC AGATTGAGGT ACTGAAATGT GTGGGCGTGG CTTAAGGGTG GGAAAGAATA
            301 TATAAGGTGG GGGTCTTATG TAGTTTTGTA TCTGTTTTGC AGCAGCCGCC GCCGCCATGA
            361 GCACCAACTC GTTTGATGGA AGCATTGTGA GCTCATATTT GACAACGCGC ATGCCCCCAT
            421 GGGCCGGGGT GCGTCAGAAT GTGATGGGCT CCAGCATTGA TGGTCGCCCC GTCCTGCCCG
            481 CAAACTCTAC TACCTTGACC TACGAGACCG TGTCTGGAAC GCCGTTGGAG ACTGCAGCCT
            541 CCGCCGCCGC TTCAGCCGCT GCAGCCACCG CCCGCGGGAT TGTGACTGAC TTTGCTTTCC
            601 TGAGCCCGCT TGCAAGCAGT GCAGCTTCCC GTTCATCCGC CCGCGATGAC AAGTTGACGG
            661 CTCTTTTGGC ACAATTGGAT TCTTTGACCC GGGAACTTAA TGTCGTTTCT CAGCAGCTGT
            721 TGGATCTGCG CCAGCAGGTT TCTGCCCTGA AGGCTTCCTC CCCTCCCAAT GCGGTTTAAA
            781 ACATAAATAA AAAACCAGAC TCTGTTTGGA TTTGGATCAA GCAAGTGTCT TGCTGTCTTT
            841 ATTTAGGGGT TTTGCGCGCG CGGTAGGCCC GGGGACCAGC GGTCTCGGGT CGTTGAGGGT
            901 CCTGTGTATT TTTTTCCAGG ACGTGGTAAA GGTGACTCTG GGATGTTCAG ATACATGGGG
            961 CATAAGCCCG GTCTCTGGGG TGGGAGGGTA GCACCACTGC AGAGCTTTCA TGCTGCGGGG
           1021 TGTTGTTGTA GATGATTCCA GTCGTAGCAA GAAGCGGCTG GCCGTTGCAT GGCTAAAAAT
          1081 TGTTCGTTTC AGTAGCCAAG C
          //

          Please visit Sequencing and PCR primers for primer information.


          References

          Original, user report and related articles

          original Kanegae, Y., Efficient gene activation system on mammalian cell chromosomes using recombinant adenovirus producing Cre recombinase. Gene, 181, 207-212 (1996). PMID 8973332.
          original Kanegae, Y., Efficient gene activation in mammalian cells by using recombinant adenovirus expressing site-specific Cre recombinase. Nucleic Acids Res., 23, 3816-3821 (1995). PMID 7479022.
          reference Hosoya, M., Cochlear Cell Modeling Using Disease-Specific iPSCs Unveils a Degenerative Phenotype and Suggests Treatments for Congenital Progressive Hearing Loss. Cell Rep. 18 (1): 68-81 (2017). PMID 28052261.
          reference Danno, S., PKN2 is essential for mouse embryonic development and proliferation of mouse fibroblasts. Genes Cells 22 (2): 220-236 (2017) PMID 28102564.
          reference Sato, T., JSAP1/JIP3 and JLP regulate kinesin-1-dependent axonal transport to prevent neuronal degeneration. Cell Death Differ. 22 (8): 1260-1274 (2015). PMID 25571974.
          reference Tuvshintugs, B., JSAP1 and JLP are required for ARF6 localization to the midbody in cytokinesis. Genes Cells 19 (9): 692-703 (2014). PMID 25130574.
          reference Fukamachi, K., A novel reporter rat strain that expresses LacZ upon Cre-mediated recombination. Genesis, 51 (4): 268-274 (2013). PMID 23349063.
          reference Niwa, H., Efficient selection for high-expression transfectants with a novel eukaryotic vector. Gene, 108 (2): 193-200 (1991). PMID 1660837.
          user_report Kanatsu-Shinohara, M., Adenovirus-mediated gene delivery restores fertility in congenitally infertile female mice. J. Reprod. Dev. 68(6): 369-376 (2022). PMID 36223953.
          user_report Morimoto, H., ROS amplification drives mouse spermatogonial stem cell self-renewal. Life Sci. Alliance 2 (2). pii: e201900374 (2019). PMID 30940732.
          user_report Morita, M., PKM1 Confers Metabolic Advantages and Promotes Cell-Autonomous Tumor Cell Growth. Cancer Cell 33 (3): 355-367.e7 (2018). PMID 29533781.
          user_report Watanabe, S., In Vivo Genetic Manipulation of Spermatogonial Stem Cells and Their Microenvironment by Adeno-Associated Viruses. Stem Cell Reports 10 (5): 1551-1564 (2018). PMID 29628393.
          user_report Salah, M., An in vitro system to characterize prostate cancer progression identified signaling required for self-renewal. Mol. Carcinog. 55 (12): 1974-1989 (2016). PMID 26621780.
          user_report Chanmee, T., Hyaluronan Production Regulates Metabolic and Cancer Stem-like Properties of Breast Cancer Cells via Hexosamine Biosynthetic Pathway-coupled HIF-1 Signaling. J. Biol. Chem. 291 (46): 24105-24120 (2016). PMID 27758869.
          user_report Kanatsu-Shinohara, M., Myc/Mycn-mediated glycolysis enhances mouse spermatogonial stem cell self-renewal. Genes Dev. 30 (23): 2637-2648 (2016). PMID 28007786.
          user_report Kurihara, C., An easy method for preparation of Cre-loxP regulated fluorescent adenoviral expression vectors and its application for direct reprogramming into hepatocytes. Biotechnol. Rep. (Amst.) 12: 26-32 (2016). PMID 28352551.
          user_report Tanaka, T., The CDKN1B-RB1-E2F1 pathway protects mouse spermatogonial stem cells from genomic damage. J. Reprod. Dev. 61 (4): 305-316 (2015). PMID 25959802.
          user_report Kanatsu-Shinohara, M., Skp1-Cullin-F-box (SCF)-type ubiquitin ligase FBXW7 negatively regulates spermatogonial stem cell self-renewal. Proc. Natl. Acad. Sci. U.S.A., 111 (24): 8826-8831 (2014). PMID 24879440.
          user_report Matsushita, Y., Microglia activation precedes the anti-opioid BDNF and NMDA receptor mechanisms underlying morphine analgesic tolerance. Curr. Pharm. Des. 19 (42): 7355-7361 (2013). PMID 23448475.
          user_report Egawa, N., The E1 protein of human papillomavirus type 16 is dispensable for maintenance replication of the viral genome. J. Virol., 86 (6): 3276-3283 (2012). PMID 22238312.
          user_report Kumadaki, S., Inhibition of Ubiquitin ligase F-box and WD repeat domain-containing 7(alpha) (Fbw7(alpha}) causes hepatosteatosis through the Kruppel-like factor 5 (KLF5)/PPAR(gamma)2 pathway, but not SREBP-1c in mice. J. Biol. Chem., 286 (47): 40835-40846 (2011). PMID 21911492.
          user_report Nodagashira T., Efficient Gene Transduction in HER2-Expressing Cells by Two Recombinant Adenovirus Vectors with HER2 Promotor and Cre/loxP System. Hirosaki Med. J., 61: 26-34 (2010).
          user_report Takashima, S., Abnormal DNA methyltransferase expression in mouse germline stem cells results in spermatogenic defects. Biol. Reprod., 81, 155-164 (2009). PMID 19228594.
          user_report Deurholt T., Novel immortalized human fetal liver cell line, cBAL111, has the potential to differentiate into functional hepatocytes. BMC Biotechnol., 9: 89 (2009). PMID 19845959.
          user_report Kanatsu-Shinohara, M., Homing of mouse spermatogonial stem cells to germline niche depends on beta1-integrin. Cell Stem Cell, 3 (5): 533-542 (2008). PMID 18983968.
          user_report Tomimatsu N., Ku70/80 modulates ATM and ATR signaling pathways in response to DNA double strand breaks. J. Biol. Chem., 282, 10138-10145 (2007). PMID 17272272.
          user_report Takehashi, M., Adenovirus-mediated gene delivery into mouse spermatogonial stem cells. Proc. Natl. Acad. Sci. U. S. A., 104 (8): 2596-2601 (2007). PMID 17299052.
          user_report Dali-Youcef N., Adipose tissue-specific inactivation of the retinoblastoma protein protects against diabesity because of increased energy expenditure. Proc. Natl. Acad. Sci. U S A., 104, 10703-10708 (2007). PMID 17556545.
          user_report Omoteyama K., Activation of connective tissue growth factor gene by the c-Maf and Lc-Maf transcription factors. Biochem. Biophys. Res. Commun., 339, 1089-1097 (2006). PMID 16343439.
          user_report Sakaki-Yumoto M., The murine homolog of SALL4, a causative gene in Okihiro syndrome, is essential for embryonic stem cell proliferation, and cooperates with Sall1 in anorectal, heart, brain and kidney development. Development, 133, 3005-3013 (2006). PMID 16790473.
          user_report Hoekstra R., Assessment of in vitro applicability of reversibly immortalized NKNT-3 cells and clonal derivatives. Cell Transplant., 15, 423-433 (2006). PMID 16970284.
          user_report Gao Z., Delection of the PDGFR-beta Gene Affects Key Fibroblast Functions Important for Wound Healing J. Biol. Chem., 280, 9375-9389 (2005). PMID 15590688.
          user_report Yanagihara M., Ribozymes targeting serine/threonine kinase Akt1 sensitize cells to anticancer drugs. Cancer Sci., 96, 620-6 (2005). PMID 16128748.
          user_report Tanaka S., Mitochondrial impairment induced by poly(ADP-ribose) polymerase-1 activation in cortical neurons after oxygen and glucose deprivation. J. Neurochem., 95, 179-190 (2005). PMID 16181422.
          user_report Nishitai G., Stress induces mitochondria-mediated apoptosis independent of SAPK/JNK activation in embryonic stem cells. J. Biol. Chem., 279, 1621-1626 (2004). PMID 14585831.
          user_report Mizukami H., Separate control of Rep and Cap expression using mutant and wild-type loxP sequences and improved packaging system for adeno-associated virus vector production. Mol. Biotechnol., 27, 7-14 (2004). PMID 15122043.
          user_report Matsuura K., Cardiomyocytes fuse with surrounding noncardiomyocytes and reenter the cell cycle. J. Cell Biol., 167, 351-363 (2004). PMID 15492039.
          user_report Aihara M., Angiogenic endothelium-specific nestin expression is enhanced by the first intron of the nestin gene. Lab. Invest., 84, 1581-1592 (2004). PMID 15502861.
          user_report Suzuki K., Adenovirus-mediated gene transfer of interferon alpha improves dimethylnitrosamine-induced liver cirrhosis in rat model. Gene Ther., 10, 765-773 (2003). PMID 12704415.
          user_report Furuyama T., Forkhead transcription factor FOXO1 (FKHR)-dependent induction of PDK4 gene expression in skeletal muscle during energy deprivation. Biochem. J., 375, 365-371 (2003). PMID 12820900.
          user_report Nishioka K., Immortalization of bone marrow-derived human mesenchymal stem cells by removable simian virus 40T antigen gene: analysis of the ability to support expansion of cord blood hematopoietic progenitor cells. Int. J. Oncol., 23, 925-32 (2003). PMID 12963970.
          user_report Noguchi H., Controlled expansion of human endothelial cell populations by Cre-loxP-based reversible immortalization. Hum. Gene Ther., 13, 321-334 (2002). PMID 11812287.
          user_report Iida A., Cytoplasmic RNA vector derived from nontransmissible Sendai virus. Production and use. Methods Mol. Med., 69, 361-370 (2002). PMID 11987789.
          user_report Kaartinen V., TGFbeta3-induced activation of RhoA/Rho-kinase pathway is necessary but not sufficient for epithelio-mesenchymal transdifferentiation: implications for palatogenesis. Int. J. Mol. Med., 9, 563-70 (2002). PMID 12011971.
          user_report Ohba Y., Requirement for C3G-dependent Rap1 activation for cell adhesion and embryogenesis. EMBO J., 20, 3333-3341 (2001). PMID 11432821.
          user_report Fukazawa T., Accelerated degradation of cellular FLIP protein through the ubiquitin-proteasome pathway in p53-mediated apoptosis of human cancer cells. Oncogene, 20, 5225-5231 (2001). PMID 11526513.
          user_report Kobayashi N., Cre/loxP-based reversible immortalization of human hepatocytes. Cell Transplant., 10, 383-386 (2001). PMID 11549058.
          user_report Yokoo T., Inflamed glomeruli-specific gene activation that uses recombinant adenovirus with the Cre/loxP system. J. Am. Soc. Nephrol., 12, 2330-2337 (2001). PMID 11675409.
          user_report Kaartinen V., Removal of the floxed neo gene from a conditional knockout allele by the adenoviral Cre recombinase in vivo. Genesis., 31, 126-129 (2001). PMID 11747203.
          user_report Araki T., Shp-2 specifically regulates several tyrosine-phosphorylated proteins in brain-derived neurotrophic factor signaling in cultured cerebral cortical neurons. Neurochem., 74, 659-668 (2000). PMID 10646517.
          user_report Kobayashi N., Prevention of acute liver failure in rats with reversibly immortalized human hepatocytes. Science, 287, 1258-1262 (2000). PMID 10678831.

          2023.05.22

          GNP_filter3_RDBDEP_html_230512.pl