George Church Lab, Harvard Medical School
PCR_protocol.html">http://twod.med.harvard.edu/labgc/estep/longPCR_protocol.html
Efficient Long PCR results from the use of two polymerases: a non-proofreading polymerase is the main polymerase in the reaction, and a proofreading polymerase (3' to 5' exo) is present at a lower concentration. Following the results of Cheng et al. PCR_protocol.html#Cheng">(1) we have had success using Tth (ABI/Perkin-Elmer) as the main-component polymerase and Vent (New England Biolabs) as the fractional-component polymerase. Other combinations of proofreading and non-proofreading polymerases have been used successfully for many applications. The buffer listed below works well with Tth and Vent, but not with others. If you are interested in using other polymerases make sure that you use compatible buffers. Error rates for other polymerases can be found at http://research.nwfsc.noaa.gov/protocols/taq-errors.html
50 microliter reaction same as above except for the following change: 0.1 U Vent per rxn. This Vent concentration has not been completely optimized and more Vent might be better, but this concentration works well.
Others have informed us that conditions similar to those above work well.
In our hands tricine buffer works well with Tth but not as well with Taq. The pH is probably critical to the efficiency of amplification of long targets PCR_protocol.html#Cheng">(1).
85 mM KOAc
25 mM Tricine pH 8.7 (adjust pH of Tricine stock solution with KOH)
8% glycerol
1% DMSO (1 to 4% works)
1.1-1.3 mM Mg(OAc)2
A 5X buffer stock containing 6 mM Mg(OAc)2 (1.2 mM final concentration) and 5% DMSO (1% final concentration) can easily be made using 500 mM Mg(OAc)2, 1 M Tricine and 1 M KOAc stock solutions as follows:
425 mM KOAc
125 mM Tricine pH 8.7 (adjust pH of Tricine stock solution with KOH)
40% glycerol
5% DMSO
1.2 mM Mg(OAc)2
4.25 ml 1M KOAc
1.25 ml 1M Tricine, pH8.7 @ 25 degrees C (with KOH)
4.00 ml glycerol
0.50 ml DMSO
120 ul 500 mM Mg(OAc)2
Generally, we have been using two temperature cycles with one annealing/extension step @ 68 degrees C and a short melting step @ 94 degrees C.Presently, a rough formula for calculating annealing/extension times is 1 min (2.5 sec/100 bases) = n. The constant one minute is probably necessary for primer annealing/extension to occur; at 68 degrees C the kinetics of primer-template annealing and melting may become the limiting factor in the rate of primer extension.
Initial melting 94 degrees C 10-15 sec
Cycles 1-15 94 degrees C 10 sec, 68 degrees C for n min (15 times)
Cycles 16-30 94 degrees C 10 sec, 68 degrees C for n min 15 sec/cycle (15 times)
The 15 sec cycle extension for cycles 16-30 may be necessary for only the longest PCR (20 kb), please experiment.
I use a hot start method for all of my L-PCR. I split the reaction into two parts: a template/primer fraction which is 3/4 or 4/5 of the reaction volume, and a polymerase fraction which constitutes the remaining 1/4 or 1/5 of the reaction. Each fraction is 1X for buffer concentration. The polymerase fraction contains only polymerase, buffer and water; all other components are included in the template/primer fraction. I put the template/primer fraction in the tube and heat in the PCR machine to 94 degrees C for 10 sec. to denature. I then add the polymerase fraction during the first annealing/extension step. Alternatively, after denaturing, an 80 degree step can be used for adding the polymerase fraction(P.E.).
We have had success using the following guidelines for primers (these are not inviolable rules, they are simply guidelines):
Primers are 20 to 23 bases in length
G C = 12 bases
A T = 8 to 11 bases
Ideal Tm = 60 to 68 degrees C in 85 mM salt. These values were calculated using the PrimerSelect program of DNAStar. A working primer might have a Tm significantly lower than 60 degrees C and we have used successfully primers with Tm values below 50 degrees C, but avoid this if possible-especially if you are doing genomic DNA templated reactions. We have successfully used the positive control primers from the PCR-XL kit available from Perkin-Elmer, and these primers both have Tm values of about 60 degrees C using PrimerSelect from DNAStar. Other programs probably give similar results.
Avoid primer hairpins.
Avoid primers with 3' complementarity (results in primer-dimers). These last two problems can be avoided with the aid of a primer-picking program like PrimerSelect or Oligo.
1.
DNA. Proc. Natl. Acad. Sci. 91, 5695-5699 (1994).
2U to 5U Tth
0.02 U Vent
0.2 mM each dNTP
20-40 pmoles each primer (400-800 nM)
1.1-1.3 mM Mg(OAc)2
10^5 -10^7 template molecules
国家药监局关于批准注册323个医疗器械产品的公告(2026年6月)(2026年第65号)2026年6月,国家药监局共批准注册医疗器械产品323个。其中,境内第三类医疗器械产品282个,进口第三类医疗器......
国家药监局关于批准注册323个医疗器械产品的公告(2026年6月)(2026年第65号)2026年6月,国家药监局共批准注册医疗器械产品323个。其中,境内第三类医疗器械产品282个,进口第三类医疗器......
1月5日,国家药监局发布医疗器械批准证明文件,其中罗氏诊断产品(苏州)有限公司最新获批一款全自动核酸提取及荧光PCR检测系统(国械注准20253222730)。这是目前罗氏诊断获批的首个国产PCR一体......
近日,海关总署物资装备采购中心发布多则公告,分别就“海关总署2025年数字化摄影X射线系统采购项目(重新招标)”“海关总署2025年PCR仪采购项目(重新招标)”“海关总署2025年彩色多普勒超声诊断......
医疗器械优先审批申请审核结果公示(2025年第14号)依据原国家食品药品监督管理总局《医疗器械优先审批程序》(总局公告2016年168号),对申请优先审批的医疗器械注册申请进行审核,现将符合优先审批情......
近日,海关总署陆续公布了一批分析仪器的采购项目中标结果,涵盖气相色谱仪、超高效液相色谱-三重四极杆质谱仪、波长色散X射线荧光光谱、PCR仪蛋白质测定仪、基因测序仪等多个领域,总中标金额高达6900余万......
全球生命科学研究和临床诊断产品领域的领导者伯乐实验室有限公司(纽约证券交易所代码:BIO和BIO.B)近日宣布推出四款新的微滴式数字PCR(ddPCR™)平台。新推出的仪器包括伯乐公司的QXConti......
国家药品监督管理局医疗器械技术审评中心发布医疗器械优先审批申请审核结果公示(2025年第6号),同意了苏州淦江生物技术有限公司申请的运动神经元存活基因1(SMN1)检测试剂盒(PCR-荧光探针熔解曲线......
近日,华中农业大学发布多个实验室仪器设备政府采购意向,采购的产品包括:超高分辨多色快速成像系统、荧光定量PCR仪、显微镜、蛋白纯化系统、分析天平、电泳仪、摇床、细胞破碎仪、核酸转染系统、纯水系统等,采......
Geneoscopy公司周三宣布已完成1.05亿美元的C轮融资。此轮融资由伯乐实验室领投,两家公司在一份联合声明中表示,这笔资金将用于支持Geneoscopy公司无创结直肠癌筛查检测的推出。参与此次融......