至今,GenScript的服务及产品已被Cell, Nature, Science, PNAS等1300多家生物医药类杂志引用近万次,处于行业领先水平。NIH、哈佛、耶鲁、斯坦福、普林斯顿、杜克大学等约400家全球著名机构使用GenScript的基因合成、多肽服务、抗体服务和蛋白服务等成功地发表科研成果,再次证明GenScript 有能力帮助业内科学家Make research easy.

The Rad51 paralogs facilitate a novel DNA strand specific damage tolerance pathway.

Nat Commun. 2019-08; 
RosenbaumJoel C,BonillaBraulio,HengelSarah R,MertzTony M,HerkenBenjamin W,KazemierHinke G,PressimoneCatherine A,RattermanTimothy C,MacNaryEllen,De MagisAlessio,KwonYoungho,GodinStephen K,Van HoutenBennett,NormolleDaniel P,SungPatrick,DasSubha R,PaeschkeKatrin,RobertsSteven A,VanDemarkAndrew P,BernsteinKa
Products/Services Used Details Operation
DNA Sequencing The resulting PCR products were Sanger sequenced (GenScript, Piscataway, NJ), using primers oTM-94, oTM-95, and seqDG-91 (Supplementary Table 4) and the mutations inactivating CAN1 were identified using the Geneious software package (Biomatters). Get A Quote

摘要

Accurate DNA replication is essential for genomic stability and cancer prevention. Homologous recombination is important for high-fidelity DNA damage tolerance during replication. How the homologous recombination machinery is recruited to replication intermediates is unknown. Here, we provide evidence that a Rad51 paralog-containing complex, the budding yeast Shu complex, directly recognizes and enables tolerance of predominantly lagging strand abasic sites. We show that the Shu complex becomes chromatin associated when cells accumulate abasic sites during S phase. We also demonstrate that purified recombinant Shu complex recognizes an abasic analog on a double-flap substrate, which prevents AP endonucl... More

关键词