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Peptide conjugates as tools for the study of biological signal transduction.

机译:肽缀合物作为研究生物信号转导的工具。

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Today, many biological phenomena are being investigated and understood in molecular detail, and organic chemistry is increasingly being directed towards biological phenomena. This review is intended to highlight this interplay of organic chemistry and biology, using biological signal transduction as an example. Lipo-, glyco-, phospho- and nucleoproteins play key roles in the processes whereby chemical signals are passed across cell membranes and further to the cell nucleus. For the study of the biological phenomena associated with these protein conjugates, structurally well-defined peptides containing the characteristic linkage region of the peptide backbone with the lipid, the carbohydrate or the phosphoric acid ester can provide valuable tools. The multi-functionality and pronounced acid- and base-lability of such compounds renders their synthesis a formidable challenge to conventional organic synthesis. However, the recent development of enzymatic protecting groups, provides one of the central techniques which, when coupled with classic chemical synthesis, can provide access to these complex and sensitive biologically relevant peptide conjugates under particularly mild conditions and with high selectivity.
机译:如今,许多生物学现象正在被分子详细研究和理解,有机化学正越来越多地针对生物学现象。本文以生物信号转导为例,旨在强调有机化学与生物学之间的相互作用。脂蛋白,糖蛋白,磷酸蛋白和核蛋白在化学信号穿过细胞膜并进一步传递到细胞核的过程中起着关键作用。为了研究与这些蛋白质结合物有关的生物学现象,结构明确的含有肽骨架与脂质,碳水化合物或磷酸酯的特征性连接区的肽可以提供有价值的工具。这些化合物的多功能性以及明显的酸和碱不稳定性,使其合成成为常规有机合成的巨大挑战。然而,酶保护基团的最新发展提供了一种中心技术,当与经典化学合成结合时,可以在特别温和的条件下以高选择性提供对这些复杂且敏感的生物学相关肽缀合物的访问。

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