首页> 美国卫生研究院文献>Molecules >The 2-(Triphenylsilyl)ethoxycarbonyl-(Tpseoc-) Group: A New Silicon-Based Fluoride Cleavable Oxycarbonyl Protecting Group Highly Orthogonal to the Boc- Fmoc- and Cbz-Groups
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The 2-(Triphenylsilyl)ethoxycarbonyl-(Tpseoc-) Group: A New Silicon-Based Fluoride Cleavable Oxycarbonyl Protecting Group Highly Orthogonal to the Boc- Fmoc- and Cbz-Groups

机译:2-(三苯基甲硅烷基)乙氧基羰基-( Tpseoc-)基团:与Boc-Fmoc-和Cbz基团高度正交的新型硅基氟可裂解氧羰基保护基团

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摘要

Starting from 2-(triphenylsilyl)ethanol a new oxycarbonyl protecting group cleavable by fluoride ion induced Peterson-elimination has been developed. Known 2-(triphenylsilyl)ethanol has been prepared from commercially available triphenylvinyl-silane by a hydroboration-oxidation sequence using the sterically hindered borane reagent 9-BBN. The silyl alcohol was subsequently transformed into its chloroformate, imidazolylcarboxylic acid ester and p-nitrophenyl carbonate and used in standard protocols for the formation of carbamates and carbonates. The Tpseoc group proved to be highly resistant against acidic conditions applied in removal of tert-butyl esters and the t-Boc-group. It also withstood catalytic hydrogenation, treatment with morpholine, methylhydrazine and Pd-reagents/allyl-scavanger combinations, conditions required to cleave Cbz-, Fmoc-, phthalimide- and Alloc-groups. The Tpseoc-group is cleaved upon treatment with TBAF/CsF at 0 °C or r.t. with cleavage times reaching from <10 min. to 24 h. Its orthogonality, ease of cleavage and UV-detectability makes the Tpseoc-group a promising alternative to other widely used silicon based amine protecting groups like the Teoc- and SES-groups.
机译:从2-(三苯基甲硅烷基)乙醇开始,已经开发出可被氟离子诱导的彼得森消除作用裂解的新的氧羰基保护基。已知的2-(三苯基甲硅烷基)乙醇已经通过使用空间受阻的硼烷试剂9-BBN通过硼氢化-氧化序列由市售的三苯基乙烯基硅烷制备。随后将甲硅烷醇转化为其氯甲酸酯,咪唑基羧酸酯和对硝基苯基碳酸酯,并用于标准方案中以形成氨基甲酸酯和碳酸酯。事实证明,Tpseoc基团对去除叔丁酯和t-Boc-基团所用的酸性条件具有高度抵抗力。它还经受住了催化氢化,用吗啉,甲基肼和Pd试剂/烯丙基-甲壳文组合处理,裂解Cbz-,Fmoc-,邻苯二甲酰亚胺和Alloc-基所需的条件。在0°C或室温下用TBAF / CsF处理后,Tpseoc-基团被裂解。切割时间<10分钟。至24小时Tpseoc-基团的正交性,易切割性和紫外线检测能力使其成为其他广泛使用的硅基胺保护基团(如Teoc-基团和SES-基团)的有前途的替代方案。

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