Literature DB >> 15954793

Synthesis of stable and cell-type selective analogues of cyclic ADP-ribose, a Ca(2+)-mobilizing second messenger. Structure--activity relationship of the N1-ribose moiety.

Takashi Kudoh1, Masayoshi Fukuoka, Satoshi Ichikawa, Takashi Murayama, Yasuo Ogawa, Minako Hashii, Haruhiro Higashida, Svenja Kunerth, Karin Weber, Andreas H Guse, Barry V L Potter, Akira Matsuda, Satoshi Shuto.   

Abstract

We previously developed cyclic ADP-carbocyclic ribose (cADPcR, 2) as a stable mimic of cyclic ADP-ribose (cADPR, 1), a Ca(2+)-mobilizing second messenger. A series of the N1-ribose modified cADPcR analogues, designed as novel stable mimics of cADPR, which were the 2"-deoxy analogue 3, the 3"-deoxy analogue 4, the 3"-deoxy-2"-O-(methoxymethyl) analogue 5, the 3"-O-methyl analogue 6, the 2",3"-dideoxy analogue 7, and the 2",3"-dideoxydidehydro analogue 8, were successfully synthesized using the key intramolecular condensation reaction with phenylthiophosphate-type substrates. We investigated the conformations of these analogues and of cADPR and found that steric repulsion between both the adenine and N9-ribose moieties and between the adenine and N1-ribose moieties was a determinant of the conformation. The Ca(2+)-mobilizing effects were evaluated systematically using three different biological systems, i.e., sea urchin eggs, NG108-15 neuronal cells, and Jurkat T-lymphocytes. The relative potency of Ca(2+)-mobilization by these cADPR analogues varies depending on the cell-type used: e.g., 3"-deoxy-cADPcR (4) > cADPcR (2) > cADPR (1) in sea urchin eggs; cADPR (1) >> cADPcR (2) approximately 3"-deoxy-cADPcR (4) in T-cells; and cADPcR (2) > cADPR (1) > 3"-deoxy-cADPcR (4) in neuronal cells, respectively. These indicated that the target proteins and/or the mechanism of action of cADPR in sea urchin eggs, T-cells, and neuronal cells are different. Thus, this study represents an entry to cell-type selective cADPR analogues, which can be used as biological tools and/or novel drug leads.

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Year:  2005        PMID: 15954793     DOI: 10.1021/ja050732x

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  13 in total

1.  Design, Synthesis, and Chemical and Biological Properties of Cyclic ADP-4-Thioribose as a Stable Equivalent of Cyclic ADP-Ribose.

Authors:  Takayoshi Tsuzuki; Satoshi Takano; Natsumi Sakaguchi; Takashi Kudoh; Takashi Murayama; Takashi Sakurai; Minako Hashii; Haruhiro Higashida; Karin Weber; Andreas H Guse; Tomoshi Kameda; Takatsugu Hirokawa; Yasuhiro Kumaki; Mitsuhiro Arisawa; Barry V L Potter; Satoshi Shuto
Journal:  Messenger (Los Angel)       Date:  2014-06-01

2.  Preparation of bifunctional isocyanate hydroxamate linkers: Synthesis of carbamate and urea tethered polyhydroxamic acid chelators.

Authors:  Rasika Fernando; Jonathan M Shirley; Emilio Torres; Hollie K Jacobs; Aravamudan S Gopalan
Journal:  Tetrahedron Lett       Date:  2012-11-21       Impact factor: 2.415

3.  8-Bromo-cyclic inosine diphosphoribose: towards a selective cyclic ADP-ribose agonist.

Authors:  Tanja Kirchberger; Christelle Moreau; Gerd K Wagner; Ralf Fliegert; Cornelia C Siebrands; Merle Nebel; Frederike Schmid; Angelika Harneit; Francesca Odoardi; Alexander Flügel; Barry V L Potter; Andreas H Guse
Journal:  Biochem J       Date:  2009-07-29       Impact factor: 3.857

4.  Synthesis and evaluation of cyclopentane-based muraymycin analogs targeting MraY.

Authors:  Seung-Hwa Kwak; Won Young Lim; Aili Hao; Ellene H Mashalidis; Do-Yeon Kwon; Pyeonghwa Jeong; Mi Jung Kim; Seok-Yong Lee; Jiyong Hong
Journal:  Eur J Med Chem       Date:  2021-02-06       Impact factor: 6.514

5.  Synthesis of cyclic adenosine 5'-diphosphate ribose analogues: a C2'endo/syn "southern" ribose conformation underlies activity at the sea urchin cADPR receptor.

Authors:  Christelle Moreau; Gloria A Ashamu; Victoria C Bailey; Antony Galione; Andreas H Guse; Barry V L Potter
Journal:  Org Biomol Chem       Date:  2010-10-25       Impact factor: 3.876

6.  Aberrant cyclization affords a C-6 modified cyclic adenosine 5'-diphosphoribose analogue with biological activity in Jurkat T cells.

Authors:  Christelle Moreau; Tanja Kirchberger; Bo Zhang; Mark P Thomas; Karin Weber; Andreas H Guse; Barry V L Potter
Journal:  J Med Chem       Date:  2012-02-08       Impact factor: 7.446

7.  New NTP analogs: the synthesis of 4'-thioUTP and 4'-thioCTP and their utility for SELEX.

Authors:  Yuka Kato; Noriaki Minakawa; Yasuo Komatsu; Hiroyuki Kamiya; Naoki Ogawa; Hideyoshi Harashima; Akira Matsuda
Journal:  Nucleic Acids Res       Date:  2005-05-24       Impact factor: 16.971

8.  Synthesis of novel N-cyclopentenyl-lactams using the Aubé reaction.

Authors:  Madhuri V Shinde; Rohini S Ople; Ekta Sangtani; Rajesh Gonnade; D Srinivasa Reddy
Journal:  Beilstein J Org Chem       Date:  2015-06-23       Impact factor: 2.883

9.  Synthesis and Biological Evaluation of a New Structural Simplified Analogue of cADPR, a Calcium-Mobilizing Secondary Messenger Firstly Isolated from Sea Urchin Eggs.

Authors:  Stefano D'Errico; Nicola Borbone; Bruno Catalanotti; Agnese Secondo; Tiziana Petrozziello; Ilaria Piccialli; Anna Pannaccione; Valeria Costantino; Luciano Mayol; Gennaro Piccialli; Giorgia Oliviero
Journal:  Mar Drugs       Date:  2018-03-10       Impact factor: 5.118

10.  Design and synthesis of cyclic ADP-4-thioribose as a stable equivalent of cyclic ADP-ribose, a calcium ion-mobilizing second messenger.

Authors:  Takayoshi Tsuzuki; Natsumi Sakaguchi; Takashi Kudoh; Satoshi Takano; Masato Uehara; Takashi Murayama; Takashi Sakurai; Minako Hashii; Haruhiro Higashida; Karin Weber; Andreas H Guse; Tomoshi Kameda; Takatsugu Hirokawa; Yasuhiro Kumaki; Barry V L Potter; Hayato Fukuda; Mitsuhiro Arisawa; Satoshi Shuto
Journal:  Angew Chem Int Ed Engl       Date:  2013-05-13       Impact factor: 15.336

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