Literature DB >> 26067760

qPCRTag Analysis--A High Throughput, Real Time PCR Assay for Sc2.0 Genotyping.

Leslie A Mitchell1, Nick A Phillips1, Andrea Lafont2, James A Martin1, Rupal Cutting2, Jef D Boeke3.   

Abstract

The Synthetic Yeast Genome Project (Sc2.0) aims to build 16 designer yeast chromosomes and combine them into a single yeast cell. To date one synthetic chromosome, synIII(1), and one synthetic chromosome arm, synIXR(2), have been constructed and their in vivo function validated in the absence of the corresponding wild type chromosomes. An important design feature of Sc2.0 chromosomes is the introduction of PCRTags, which are short, re-coded sequences within open reading frames (ORFs) that enable differentiation of synthetic chromosomes from their wild type counterparts. PCRTag primers anneal selectively to either synthetic or wild type chromosomes and the presence/absence of each type of DNA can be tested using a simple PCR assay. The standard readout of the PCRTag assay is to assess presence/absence of amplicons by agarose gel electrophoresis. However, with an average PCRTag amplicon density of one per 1.5 kb and a genome size of ~12 Mb, the completed Sc2.0 genome will encode roughly 8,000 PCRTags. To improve throughput, we have developed a real time PCR-based detection assay for PCRTag genotyping that we call qPCRTag analysis. The workflow specifies 500 nl reactions in a 1,536 multiwell plate, allowing us to test up to 768 PCRTags with both synthetic and wild type primer pairs in a single experiment.

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Year:  2015        PMID: 26067760      PMCID: PMC4542976          DOI: 10.3791/52941

Source DB:  PubMed          Journal:  J Vis Exp        ISSN: 1940-087X            Impact factor:   1.355


  10 in total

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Authors:  Sarah M Richardson; Steffi Liu; Jef D Boeke; Joel S Bader
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2.  Probing the limits of genetic recoding in essential genes.

Authors:  M J Lajoie; S Kosuri; J A Mosberg; C J Gregg; D Zhang; G M Church
Journal:  Science       Date:  2013-10-18       Impact factor: 47.728

3.  Designer deletion strains derived from Saccharomyces cerevisiae S288C: a useful set of strains and plasmids for PCR-mediated gene disruption and other applications.

Authors:  C B Brachmann; A Davies; G J Cost; E Caputo; J Li; P Hieter; J D Boeke
Journal:  Yeast       Date:  1998-01-30       Impact factor: 3.239

4.  Preparation of genomic DNA from Saccharomyces cerevisiae.

Authors:  Jessica S Dymond
Journal:  Methods Enzymol       Date:  2013       Impact factor: 1.600

5.  Synthetic chromosome arms function in yeast and generate phenotypic diversity by design.

Authors:  Jessica S Dymond; Sarah M Richardson; Candice E Coombes; Timothy Babatz; Héloïse Muller; Narayana Annaluru; William J Blake; Joy W Schwerzmann; Junbiao Dai; Derek L Lindstrom; Annabel C Boeke; Daniel E Gottschling; Srinivasan Chandrasegaran; Joel S Bader; Jef D Boeke
Journal:  Nature       Date:  2011-09-14       Impact factor: 49.962

6.  Total synthesis of a functional designer eukaryotic chromosome.

Authors:  Narayana Annaluru; Héloïse Muller; Leslie A Mitchell; Sivaprakash Ramalingam; Giovanni Stracquadanio; Sarah M Richardson; Jessica S Dymond; Zheng Kuang; Lisa Z Scheifele; Eric M Cooper; Yizhi Cai; Karen Zeller; Neta Agmon; Jeffrey S Han; Michalis Hadjithomas; Jennifer Tullman; Katrina Caravelli; Kimberly Cirelli; Zheyuan Guo; Viktoriya London; Apurva Yeluru; Sindurathy Murugan; Karthikeyan Kandavelou; Nicolas Agier; Gilles Fischer; Kun Yang; J Andrew Martin; Murat Bilgel; Pavlo Bohutski; Kristin M Boulier; Brian J Capaldo; Joy Chang; Kristie Charoen; Woo Jin Choi; Peter Deng; James E DiCarlo; Judy Doong; Jessilyn Dunn; Jason I Feinberg; Christopher Fernandez; Charlotte E Floria; David Gladowski; Pasha Hadidi; Isabel Ishizuka; Javaneh Jabbari; Calvin Y L Lau; Pablo A Lee; Sean Li; Denise Lin; Matthias E Linder; Jonathan Ling; Jaime Liu; Jonathan Liu; Mariya London; Henry Ma; Jessica Mao; Jessica E McDade; Alexandra McMillan; Aaron M Moore; Won Chan Oh; Yu Ouyang; Ruchi Patel; Marina Paul; Laura C Paulsen; Judy Qiu; Alex Rhee; Matthew G Rubashkin; Ina Y Soh; Nathaniel E Sotuyo; Venkatesh Srinivas; Allison Suarez; Andy Wong; Remus Wong; Wei Rose Xie; Yijie Xu; Allen T Yu; Romain Koszul; Joel S Bader; Jef D Boeke; Srinivasan Chandrasegaran
Journal:  Science       Date:  2014-03-27       Impact factor: 47.728

7.  Total synthesis of a eukaryotic chromosome: Redesigning and SCRaMbLE-ing yeast.

Authors:  Dejana Jovicevic; Benjamin A Blount; Tom Ellis
Journal:  Bioessays       Date:  2014-07-22       Impact factor: 4.345

Review 8.  Life with 6000 genes.

Authors:  A Goffeau; B G Barrell; H Bussey; R W Davis; B Dujon; H Feldmann; F Galibert; J D Hoheisel; C Jacq; M Johnston; E J Louis; H W Mewes; Y Murakami; P Philippsen; H Tettelin; S G Oliver
Journal:  Science       Date:  1996-10-25       Impact factor: 47.728

9.  GeneDesign 3.0 is an updated synthetic biology toolkit.

Authors:  Sarah M Richardson; Paul W Nunley; Robert M Yarrington; Jef D Boeke; Joel S Bader
Journal:  Nucleic Acids Res       Date:  2010-03-08       Impact factor: 16.971

10.  The Saccharomyces cerevisiae SCRaMbLE system and genome minimization.

Authors:  Jessica Dymond; Jef Boeke
Journal:  Bioeng Bugs       Date:  2012-05-01
  10 in total
  3 in total

1.  Resetting the Yeast Epigenome with Human Nucleosomes.

Authors:  David M Truong; Jef D Boeke
Journal:  Cell       Date:  2017-11-30       Impact factor: 41.582

2.  De novo assembly and delivery to mouse cells of a 101 kb functional human gene.

Authors:  Leslie A Mitchell; Laura H McCulloch; Sudarshan Pinglay; Henri Berger; Nazario Bosco; Ran Brosh; Milica Bulajić; Emily Huang; Megan S Hogan; James A Martin; Esteban O Mazzoni; Teresa Davoli; Matthew T Maurano; Jef D Boeke
Journal:  Genetics       Date:  2021-05-17       Impact factor: 4.562

3.  In vitro DNA SCRaMbLE.

Authors:  Yi Wu; Rui-Ying Zhu; Leslie A Mitchell; Lu Ma; Rui Liu; Meng Zhao; Bin Jia; Hui Xu; Yun-Xiang Li; Zu-Ming Yang; Yuan Ma; Xia Li; Hong Liu; Duo Liu; Wen-Hai Xiao; Xiao Zhou; Bing-Zhi Li; Ying-Jin Yuan; Jef D Boeke
Journal:  Nat Commun       Date:  2018-05-22       Impact factor: 14.919

  3 in total

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