P(III) vs P(V): A P(V) Reagent for Thiophosphoramidate Linkages and Application to an Asymmetric Synthesis of a Cyclic Dinucleotide STING Agonist

Author:

Zheng Bin1ORCID,Hang Chao1,Zhu Jason1,Purdum Geoffrey E.1,Sezen-Edmonds Melda1ORCID,Treitler Daniel S.1ORCID,Yu Miao1ORCID,Yuan Changxia1,Zhu Ye1,Freitag Adam1,Guo Siwei1,Zhu Guanghui1,Hritzko Ben1,Paulson James1,Shackman Jonathan G.1,He Brian L.1,Fu Weiqing1,Tai Hua Chia1,Ayers Sloan1ORCID,Park Hyunsoo1,Eastgate Martin D.1ORCID,Cohen Ben1ORCID,Rogers Amanda1,Wang Qinggang1,Schmidt Michael A.1ORCID

Affiliation:

1. Bristol Myers Squibb, Chemical Process Development, 1 Squibb Drive, New Brunswick, New Jersey 08903, United States

Publisher

American Chemical Society (ACS)

Subject

Organic Chemistry

Reference12 articles.

1. An initial version of this work was deposited in ChemRxiv on Mar 12, 2021, reference P(III) vs. P(V): A P(V) Reagent for Thiophosphoramidate Linkages and Application to An Asymmetric Synthesis of a Cyclic Dinucleotide STING Agonist (chemrxiv.org).

2. Molecular Pathways: Targeting the Stimulator of Interferon Genes (STING) in the Immunotherapy of Cancer

3. Current patent and clinical status of stimulator of interferon genes (STING) agonists for cancer immunotherapy

4. Effect of deoxynucleoside phosphorothioates incorporated in DNA on cleavage by restriction enzymes.

5. The Thermodynamics of Phosphate versus Phosphorothioate Ester Hydrolysis

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