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		<title>Thermostable M-MLV Reverse Transcriptase</title>
		<link>https://www.mebep.com/enzymes/thermostable-m-mlv-reverse-transcriptase/</link>
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		<pubDate>Wed, 01 Sep 2021 11:08:06 +0000</pubDate>
				<category><![CDATA[Enzymes]]></category>
		<category><![CDATA[PCR RT PCR]]></category>
		<category><![CDATA[MMLV]]></category>
		<category><![CDATA[PCR & RT PCR]]></category>
		<category><![CDATA[Reverse Transcriptase]]></category>
		<category><![CDATA[RT03]]></category>
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					<description><![CDATA[It can remain the 100% activity at 50℃, it can also keep more than 80% activity even at 55℃.
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<p><a href="https://www.tinzyme.com/man/RT03.pdf" target="_blank" rel="noreferrer noopener">Manual</a></p>



<p><strong>Product Number: RT03</strong></p>



<p>Thermostable M-MLV Reverse Transcriptase (RNase H-)</p>



<p>Supplied by Bulk</p>



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<figure class="alignleft size-full"><img fetchpriority="high" decoding="async" width="264" height="217" src="https://mebep.com/wp-content/uploads/2021/09/Thermostable-M-MLV-Reverse-Transcriptase-1.jpg" alt="Thermostable M-MLV Reverse Transcriptase" class="wp-image-463" srcset="https://www.mebep.com/wp-content/uploads/2021/09/Thermostable-M-MLV-Reverse-Transcriptase-1.jpg 264w, https://www.mebep.com/wp-content/uploads/2021/09/Thermostable-M-MLV-Reverse-Transcriptase-1-178x146.jpg 178w, https://www.mebep.com/wp-content/uploads/2021/09/Thermostable-M-MLV-Reverse-Transcriptase-1-50x41.jpg 50w, https://www.mebep.com/wp-content/uploads/2021/09/Thermostable-M-MLV-Reverse-Transcriptase-1-91x75.jpg 91w" sizes="(max-width:767px) 264px, 264px" /></figure>
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<figure class="alignleft size-full"><img decoding="async" width="268" height="172" src="https://mebep.com/wp-content/uploads/2021/09/Thermostable-M-MLV-Reverse-Transcriptase-2.jpg" alt="Thermostable M-MLV Reverse Transcriptase" class="wp-image-464" srcset="https://www.mebep.com/wp-content/uploads/2021/09/Thermostable-M-MLV-Reverse-Transcriptase-2.jpg 268w, https://www.mebep.com/wp-content/uploads/2021/09/Thermostable-M-MLV-Reverse-Transcriptase-2-227x146.jpg 227w, https://www.mebep.com/wp-content/uploads/2021/09/Thermostable-M-MLV-Reverse-Transcriptase-2-50x32.jpg 50w, https://www.mebep.com/wp-content/uploads/2021/09/Thermostable-M-MLV-Reverse-Transcriptase-2-117x75.jpg 117w" sizes="(max-width:767px) 268px, 268px" /></figure>
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<p>Template: Mouse total RNA, Reverse transcript at 50℃<br>Lane 1-2: MBS Thermostable M-MLV 200U<br>Lane 3-4 :invitrogen SuperScript® III<br>Lane 5-6:Takara m-mlv<br>Lane M: Marker </p>
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<p>Template: Mouse total RNA, Reverse transcript at 55℃<br>Lane 1-2:Takara m-mlv<br>Lane 3-4:MBS Thermostable M-MLV<br>Lane 5-6:200U invitrogen SuperScript® III<br>Lane M: Marker </p>
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<p><strong>Description</strong></p>



<p>Thermostable M-MLV Reverse Transcriptase, encoded by Moloney Murine Leukemia Virus (MMLV RT) is an RNA-dependent DNA polymerase that synthesizes the complementary cDNA first strand from a single-stranded RNA template to which a primer has been hybridized. M-MLV RT will also extend primers hybridized to single-stranded DNA. Second-strand cDNA synthesis can be achieved from some mRNA templates without an additional DNA polymerase. The difference between this to the general M-MLV RT is that the capacity to endure the heat is enhanced. It can remain the 100% activity at 50℃, it can also keep more than 80% activity even at 55℃.</p>



<p><strong>Source</strong></p>



<p>Recombination of E.coli containing Moloney murine leukemia virus reverse transcriptase gene from the clone of Moloney murine.</p>



<p><strong>Concentration</strong>: 200U/μl</p>



<p><strong>Component</strong>: M-MLV （200U/μl）5×Buffer（with DTT）</p>



<p><strong>Package</strong>： Bulk</p>



<p><strong>Features</strong></p>



<p><strong>lack RNase H activity</strong>: Weak RNaseH activity High cDNA yield, can get more full-length cDNA.</p>



<p><strong>thermostable</strong>: the optimum reaction temperature is 50℃, the highest is 60℃. Can overcome the template RNA secondary structure, and finish the reverse transcriptase experiment smoothly.</p>



<p><strong>wide temperature range</strong>: can reverse transcript from 37-60C, with more than 80% of the highest activity at 42℃-55℃ customer can choose the reaction temperature freely.</p>



<p><strong>Strong amplification activity</strong>: Gene mutation enhanced the binding capacity of the enzyme and RNA. Increased the amplification speed, can obtain the quality cDNA, suitable for cDNA library construction.</p>



<p><strong>Storage</strong>: -20℃</p>



<p><strong>Unit Definition</strong></p>



<p>One unit of MMLV RT catalyzes the incorporation of 1 nmol of dTTP into acid-insoluble material in 10 minutes at 37℃ using oligo(dT)12-18-primed poly(A)n as a template.</p>



<p><strong>Applications</strong></p>



<p>The first-strand cDNA synthesis; RT-PCR.</p>



<p><strong>Storage Buffer</strong></p>



<p>20 mMTris-HCl (pH7.5),200 mM NaCl, 0.25 mM EDTA,0.01% NP-40(v/v),2.5 mM DTT,50%glycerol(v/v).</p>



<p><strong>5X Reaction Buffer</strong></p>



<p>[5×RT Buffer] 250mM Tris-HCl (pH 8.3), 15mM MgCl2,375 mM KCl,50mM DTT.</p>



<p><strong>Recommended Reaction Conditions</strong></p>



<p><strong>The first-strand cDNA synthesis</strong></p>



<p>1) Add the following reagents to a RNase free PCR tube at room temperature add the MMLV RT last.</p>



<p>Oligo dT12-18 (1μg/μl) or random primer (50-250ng) 1μl</p>



<p>Total RNA (10ng-5μg) or mRNA(1-500ng) xμl</p>



<p>dNTP (10mM each) 1μl</p>



<p>DEPC ddH2O (14-x)μl</p>



<p>2) Gently mix and incubate 10 Min at 70℃ then chill on ice for 2-10min.</p>



<p>3) Centrifuge for a few seconds then Put the tube into ice and add the next composition :</p>



<p>5×RT Buffer 4μl</p>



<p>RNasin (40U/μl) 1μl</p>



<p>4) Gently mix and incubate at 50℃ for 2 Min（Oligo dT12-18 or sequence especially primer）or at 25℃ for 10 min for the random primer.</p>



<p>5) Centrifuge for a few seconds. Add 1μl M-MLV RT（200U/μl）Incubate at 50℃ for 50min.</p>



<p>6) Inactivate at 70℃ for 10min then get the cDNA.</p>



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