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<title>miRNA</title>
<link>http://www.scientistsolutions.com/f739-mirna.html</link>
<description>Blocking, target prediction, confirmation, expression, knock down . . . Life Science Discussion</description>
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<item>
<title>miR-27b controls venous specification and tip cell fate</title>
<link>http://www.scientistsolutions.com/t26279-mir_27b+controls+venous+specification+and+tip+cell+fate.html</link>
<description><![CDATA[Biyashev D, Veliceasa D, Topczewski J, Topczewska JM, Mizgirev I, Vinokour E, Reddi AL, Licht JD, Revskoy SY, Volpert OV. miR-27b controls venous specification and tip cell fate.  Blood. 2012 Mar 15;119(11):2679-87. doi: 10.1182/blood-2011-07-370635. Epub 2011 Dec 29.<br />]]></description>
<pubDate>Mon, 18 Mar 2013 10:18:45 GMT</pubDate>
</item>
<item>
<title>Pax6 Regulates Gene Expression in the Vertebrate Lens through miR-204</title>
<link>http://www.scientistsolutions.com/t26266-pax6+regulates+gene+expression+in+the+vertebrate+lens+through+mir_204.html</link>
<description><![CDATA[Shaham O, Gueta K, Mor E, Oren-Giladi P, Grinberg D, Xie Q, Cvekl A, Shomron N, Davis N, Keydar-Prizant M, Raviv S, Pasmanik-Chor M, Bell RE, Levy C, Avellino R, Banfi S, Conte I, Ashery-Padan R.  Pax6 Regulates Gene Expression in the Vertebrate Lens through miR-204. PLoS Genet. 2013;9(3):e1003357. doi:10.1371/journal.pgen.1003357<br />]]></description>
<pubDate>Fri, 15 Mar 2013 11:02:13 GMT</pubDate>
</item>
<item>
<title>Analysis of GATA-1-regulated miRNAs shows miR-23a  increases erythropoiesis</title>
<link>http://www.scientistsolutions.com/t25909-analysis+of+gata_1_regulated+mirnas+shows+mir_23a++increases+erythropoiesis.html</link>
<description><![CDATA[Zhu Y, Wang D, Wang F, Li T, Dong L, Liu H, Ma Y, Jiang F, Yin H, Yan W, Luo M, Tang Z, Zhang G, Wang Q, Zhang J, Zhou J, Yu J.  A comprehensive analysis of GATA-1-regulated miRNAs reveals miR-23a to be a positive modulator of erythropoiesis.  Nucleic Acids Res. 2013 Feb 17. [Epub ahead of print]<br />]]></description>
<pubDate>Wed, 20 Feb 2013 12:29:13 GMT</pubDate>
</item>
<item>
<title>MiRNA-30 family binds DLL4, alters endothelial cell behav'r in angiogenesis</title>
<link>http://www.scientistsolutions.com/t25130-mirna_30+family+binds+dll4%2c+alters+endothelial+cell+behav_r+in+angiogenesis.html</link>
<description><![CDATA[Bridge G, Monteiro R, Henderson S, Emuss V, Lagos D, Georgopoulou D, Patient R, Boshoff C.  The microRNA-30 family targets DLL4 to modulate endothelial cell behavior during angiogenesis. Blood 2012;[Epub ahead of print] doi:10.1182/blood-2012-04-423004 <br />http://bloodjournal.hematologylibrary.org/content/120/25/5063.abstract<br />]]></description>
<pubDate>Thu, 13 Dec 2012 15:02:59 GMT</pubDate>
</item>
<item>
<title>Transcriptome-wide miR-155 Binding Map: Broad Noncanonical MiRNA Targeting</title>
<link>http://www.scientistsolutions.com/t24661-transcriptome_wide+mir_155+binding+map_+broad+noncanonical+mirna+targeting.html</link>
<description><![CDATA[Transcriptome-wide miR-155 Binding Map: Much Noncanonical MiRNA Targeting. <br />Gabriel B. Loeb, Aly A. Khan, David Canner, Joseph B. Hiatt, Jay Shendure, Robert B. Darnell, Christina S. Leslie, Alexander Y. Rudensky.  Molecular Cell. Available online 8 November 2012, ISSN 1097-2765, 10.1016/j.molcel.2012.10.002.<br />(http://www.sciencedirect.com/science/article/pii/S1097276512008544)<br />]]></description>
<pubDate>Fri, 09 Nov 2012 10:44:10 GMT</pubDate>
</item>
<item>
<title>miR-10 Reg's Angiogenic Zfish &amp; Human Endothel. Cells by Promoting VEGF Sig</title>
<link>http://www.scientistsolutions.com/t24109-mir_10+reg_s+angiogenic+zfish+_amp%3b+human+endothel_+cells+by+promoting+vegf+sig.html</link>
<description><![CDATA[Hassel D, Cheng P, White MP, Ivey KN, Kroll J, Augustin HG, Katus HA, Stainier DY, Srivastava D.  miR-10 Regulates the Angiogenic Behavior of Zebrafish and Human Endothelial Cells by Promoting VEGF Signaling.  Circ Res. 2012 Sep 5. [Epub ahead of print]<br /> <br />]]></description>
<pubDate>Mon, 10 Sep 2012 13:58:00 GMT</pubDate>
</item>
<item>
<title>miRNA in muscle and serum of mdx mouse: therapeutic implications</title>
<link>http://www.scientistsolutions.com/t23926-mirna+in+muscle+and+serum+of+mdx+mouse_+therapeutic+implications.html</link>
<description><![CDATA[Roberts TC, Blomberg KEM, McClorey G, Andaloussi SEL, Godfrey C, Betts C, Coursindel T, Gait MJ, Edvard S, Wood MJA. Expression Analysis in Multiple Muscle Groups and Serum Reveals Complexity in the MicroRNA Transcriptome of the mdx Mouse with Implications for Therapy. Mol Ther Nucleic Acids. 2012;[Epub ahead of print] doi:/10.1038/mtna.2012.26<br />http://www.nature.com/mtna/journal/v1/n8/full/mtna201226a.html<br />]]></description>
<pubDate>Mon, 20 Aug 2012 13:52:50 GMT</pubDate>
</item>
<item>
<title>miR-142-3p: essential for hematopoiesis, affects cardiac cell fate in zfish</title>
<link>http://www.scientistsolutions.com/t23824-mir_142_3p_+essential+for+hematopoiesis%2c+affects+cardiac+cell+fate+in+zfish.html</link>
<description><![CDATA[Nishiyama T, Kaneda R, Ono T, Tohyama S, Hashimoto H, Endo J, Tsuruta H, Yuasa S, Ieda M, Makino S, Fukuda K.  miR-142-3p is essential for hematopoiesis and affects cardiac cell fate in zebrafish.  Biochem Biophys Res Commun. 2012 Aug 2. [Epub ahead of print]<br />http://www.ncbi.nlm.nih.gov/pubmed/22884798<br />]]></description>
<pubDate>Tue, 14 Aug 2012 11:21:45 GMT</pubDate>
</item>
<item>
<title>miR-126 targets p85ß, regulating Angiopoietin-1 signals &amp; vessel maturation</title>
<link>http://www.scientistsolutions.com/t23752-mir_126+targets+p85%c3%9f%2c+regulating+angiopoietin_1+signals+_amp%3b+vessel+maturation.html</link>
<description><![CDATA[Sessa R, Seano G, di Blasio L, Gagliardi PA, Isella C, Medico E, Cotelli F, Bussolino F, Primo L.  The miR-126 regulates Angiopoietin-1 signaling and vessel maturation by targeting p85&amp;beta;.  Biochim Biophys Acta. 2012 Jul 31. [Epub ahead of print]<br /> <br />]]></description>
<pubDate>Wed, 08 Aug 2012 08:31:07 GMT</pubDate>
</item>
<item>
<title>dre-miRNA-206 &amp; gastrulation cell mvmt, targets prickle1a &amp; regs JNK2 PO4'n</title>
<link>http://www.scientistsolutions.com/t23228-dre_mirna_206+_amp%3b+gastrulation+cell+mvmt%2c+targets+prickle1a+_amp%3b+regs+jnk2+po4_n.html</link>
<description><![CDATA[Liu X, Ning G, Meng A, Wang Q.  MicroRNA-206 regulates cell movements during zebrafish gastrulation by targeting prickle1a and regulating JNK2 phosphorylation.  Mol Cell Biol. 2012 May 21. [Epub ahead of print]<br />]]></description>
<pubDate>Wed, 23 May 2012 11:09:19 GMT</pubDate>
</item>
<item>
<title>miR-221 Req'd for Endothelial Tip Cell Behaviors during Vascular Dev'ment</title>
<link>http://www.scientistsolutions.com/t22089-mir_221+req_d+for+endothelial+tip+cell+behaviors+during+vascular+dev_ment.html</link>
<description><![CDATA[Nicoli S, Knyphausen CP, Zhu LJ, Lakshmanan A, Lawson ND. miR-221 Is Required for Endothelial Tip Cell Behaviors during Vascular Development. Dev Cell. 2012 Feb 14;22(2):418-29.]]></description>
<pubDate>Thu, 23 Feb 2012 11:01:56 GMT</pubDate>
</item>
<item>
<title>Translational inhibition by deadenylation-independent mechanisms: miRNA</title>
<link>http://www.scientistsolutions.com/t21993-translational+inhibition+by+deadenylation_independent+mechanisms_+mirna.html</link>
<description><![CDATA[Mishima Y, Fukao A, Kishimoto T, Sakamoto H, Fujiwara T, Inoue K.  Translational inhibition by deadenylation-independent mechanisms is central to microRNA-mediated silencing in zebrafish.  Proc Natl Acad Sci U S A. 2012 Jan 24;109(4):1104-9. Epub 2012 Jan 9.]]></description>
<pubDate>Mon, 13 Feb 2012 11:38:14 GMT</pubDate>
</item>
<item>
<title>MicroRNAs control neurobehavioral development and function in zebrafish</title>
<link>http://www.scientistsolutions.com/t21752-micrornas+control+neurobehavioral+development+and+function+in+zebrafish.html</link>
<description><![CDATA[Tal TL, Franzosa JA, Tilton SC, Philbrick KA, Iwaniec UT, Turner RT, Waters KM, Tanguay RL.  MicroRNAs control neurobehavioral development and function in zebrafish.  FASEB J. 2012 Jan 17. [Epub ahead of print]]]></description>
<pubDate>Mon, 23 Jan 2012 14:54:27 GMT</pubDate>
</item>
<item>
<title>Antisense miR-7 impairs insulin expression: dev'ing pancreas &amp; cultured bud</title>
<link>http://www.scientistsolutions.com/t21493-antisense+mir_7+impairs+insulin+expression_+dev_ing+pancreas+_amp%3b+cultured+bud.html</link>
<description><![CDATA[Nieto M, Hevia P, Garcia E, Klein D, Alvarez-Cubela S, Bravo-Egana V,  Rosero S, Molano RD, Vargas N, Ricordi C, Pileggi A, Diez J,  Dom&amp;iacute;nguez-Bendala J, Pastori RL.  Anti sense miR-7 impairs insulin expression in developing pancreas and in cultured pancreatic buds.  Cell Transplant. 2011 Dec 20. [Epub ahead of print]<br />]]></description>
<pubDate>Fri, 23 Dec 2011 11:39:52 GMT</pubDate>
</item>
<item>
<title>Target protector Morpholinos probe specific miRNA-mRNA interactions</title>
<link>http://www.scientistsolutions.com/t21310-target+protector+morpholinos+probe+specific+mirna_mrna+interactions.html</link>
<description><![CDATA[Staton AA, Giraldez AJ.  Use of target protector morpholinos to analyze the physiological roles of specific miRNA-mRNA pairs in vivo.  Nat Protoc. 2011 Dec 1;6(12):2035-2049. doi: 10.1038/nprot.2011.423.<br />]]></description>
<pubDate>Mon, 05 Dec 2011 11:30:00 GMT</pubDate>
</item>
<item>
<title>Regul'n of p53 Network Dosage by dre-miR-125b</title>
<link>http://www.scientistsolutions.com/t20445-regul_n+of+p53+network+dosage+by+dre_mir_125b.html</link>
<description><![CDATA[Le MTN, Shyh-Chang N, Khaw SL, Chin L, Teh C, Tay J, O&amp;rsquo;Day E, Korzh V, Yang H, Lal A, Lieberman J, Lodish HF, Lim B.  Conserved Regulation of p53 Network Dosage by MicroRNA&amp;ndash;125b Occurs through Evolving miRNA&amp;ndash;Target Gene Pairs. PLoS Genet. 2011;7(9): e1002242. doi:10.1371/journal.pgen.1002242]]></description>
<pubDate>Fri, 16 Sep 2011 09:48:05 GMT</pubDate>
</item>
<item>
<title>MiRNA-23 Restricts Cardiac Valve Formation</title>
<link>http://www.scientistsolutions.com/t20366-mirna_23+restricts+cardiac+valve+formation.html</link>
<description><![CDATA[Lagendijk AK, Goumans MJ, Burkhard SB, Bakkers J.  MicroRNA-23 Restricts Cardiac Valve Formation by Inhibiting Has2 and Extracellular Hyaluronic Acid Production.  Circ Res. 2011 Sep 2;109(6):649-57. Epub 2011 Jul 21.<br />]]></description>
<pubDate>Thu, 08 Sep 2011 16:38:46 GMT</pubDate>
</item>
<item>
<title>miR-196 regulates axial patterning and pectoral appendage initiation</title>
<link>http://www.scientistsolutions.com/t19768-mir_196+regulates+axial+patterning+and+pectoral+appendage+initiation.html</link>
<description><![CDATA[He X, Yan YL, Eberhart JK, Herpin A, Wagner TU, Schartl M, Postlethwait JH.  miR-196 regulates axial patterning and pectoral appendage initiation.  Dev Biol. 2011 Jul 20. [Epub ahead of print]<br />http://www.ncbi.nlm.nih.gov/pubmed/21787766<br />]]></description>
<pubDate>Wed, 27 Jul 2011 16:57:12 GMT</pubDate>
</item>
<item>
<title>Fgf guides pharyngeal taste bud formation by miR-200 &amp; Delta-Notch activity</title>
<link>http://www.scientistsolutions.com/t19767-fgf+guides+pharyngeal+taste+bud+formation+by+mir_200+_amp%3b+delta_notch+activity.html</link>
<description><![CDATA[Kapsimali M, Kaushik A-L, Gibon G, Dirian L, Ernest S, Rosa FM. Fgf signaling controls pharyngeal taste bud formation through miR-200 and Delta-Notch activity. Development. 2011;138:3473-84. doi:10.1242/dev.058669 <br />http://dev.biologists.org/content/138/16/3473.abstract<br />]]></description>
<pubDate>Wed, 27 Jul 2011 15:33:26 GMT</pubDate>
</item>
<item>
<title>MicroRNases and the Regulated Degradation of Mature Animal miRNAs</title>
<link>http://www.scientistsolutions.com/t19606-micrornases+and+the+regulated+degradation+of+mature+animal+mirnas.html</link>
<description><![CDATA[Gro&amp;szlig;hans H, Chatterjee S.  MicroRNases and the Regulated Degradation of Mature Animal miRNAs.  Adv Exp Med Biol. 2011;700:140-155.<br />]]></description>
<pubDate>Fri, 15 Jul 2011 12:17:37 GMT</pubDate>
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