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Synthesis and Biological Evaluation of Fluorescent Bryostatin Analogues.


ABSTRACT: To investigate the cellular distribution of tumor-promoting vs. non-tumor-promoting bryostatin analogues, we synthesized fluorescently labeled variants of two bryostatin derivatives that have previously shown either phorbol ester-like or bryostatin-like biological activity in U937 leukemia cells. These new fluorescent analogues both displayed high affinity for protein kinase C (PKC) binding and retained the basic properties of the parent unlabeled compounds in U937 assays. The fluorescent compounds showed similar patterns of intracellular distribution in cells, however; this argues against an existing hypothesis that various patterns of intracellular distribution are responsible for differences in biological activity. Upon further characterization, the fluorescent compounds revealed a slow rate of cellular uptake; correspondingly, they showed reduced activity for cellular responses that were only transient upon treatment with phorbol ester or bryostatin 1.

SUBMITTER: Cummins TJ 

PROVIDER: S-EPMC6980389 | biostudies-literature | 2018 Apr

REPOSITORIES: biostudies-literature

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Synthesis and Biological Evaluation of Fluorescent Bryostatin Analogues.

Cummins Thomas J TJ   Kedei Noemi N   Czikora Agnes A   Lewin Nancy E NE   Kirk Sharon S   Petersen Mark E ME   McGowan Kevin M KM   Chen Jin-Qiu JQ   Luo Xiaoling X   Johnson Randall C RC   Ravichandran Sarangan S   Blumberg Peter M PM   Keck Gary E GE  

Chembiochem : a European journal of chemical biology 20180325 8


To investigate the cellular distribution of tumor-promoting vs. non-tumor-promoting bryostatin analogues, we synthesized fluorescently labeled variants of two bryostatin derivatives that have previously shown either phorbol ester-like or bryostatin-like biological activity in U937 leukemia cells. These new fluorescent analogues both displayed high affinity for protein kinase C (PKC) binding and retained the basic properties of the parent unlabeled compounds in U937 assays. The fluorescent compou  ...[more]

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