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Second messenger analogues highlight unexpected substrate sensitivity of CD38: total synthesis of the hybrid L-cyclic inosine 5′-diphosphate ribose

机译:第二信使类似物突显了CD38的意外底物敏感性:杂合 L-环肌苷5-二磷酸核糖的全合成

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摘要

The multifunctional, transmembrane glycoprotein human CD38 catalyses the synthesis of three key Ca2+-mobilising messengers, including cyclic adenosine 5′-diphosphate ribose (cADPR), and CD38 knockout studies have revealed the relevance of the related signalling pathways to disease. To generate inhibitors of CD38 by total synthesis, analogues based on the cyclic inosine 5′-diphosphate ribose (cIDPR) template were synthesised. In the first example of a sugar hybrid cIDPR analogue, “L-cIDPR”, the natural “northern” N1-linked D-ribose of cADPR was replaced by L-ribose. L-cIDPR is surprisingly still hydrolysed by CD38, whereas 8-Br-L-cIDPR is not cleaved, even at high enzyme concentrations. Thus, the inhibitory activity of L-cIDPR analogues appears to depend upon substitution of the base at C-8; 8-Br-L-cIDPR and 8-NH2-L-cIDPR inhibit CD38-mediated cADPR hydrolysis (IC50 7 μM and 21 µM respectively) with 8-Br-L-cIDPR over 20-fold more potent than 8-Br-cIDPR. In contrast, L-cIDPR displays a comparative 75-fold reduction in activity, but is only ca 2-fold less potent than cIDPR itself. Molecular modelling was used to explore the interaction of the CD38 catalytic residue Glu-226 with the “northern” ribose. We propose that Glu226 still acts as the catalytic residue even for an L-sugar substrate. 8-Br-L-cIDPR potentially binds non-productively in an upside-down fashion. Results highlight the key role of the “northern” ribose in the interaction of cADPR with CD38.
机译:多功能跨膜糖蛋白人CD38催化合成三个关键的Ca 2 + 动员信使,包括环腺苷5'-二磷酸核糖(cADPR),而CD38敲除研究揭示了相关的相关性疾病的信号传导途径。为了通过全合成产生CD38的抑制剂,合成了基于环状肌苷5'-二磷酸核糖(cIDPR)模板的类似物。在糖杂合cIDPR类似物的第一个例子“ L-cIDPR”中,cADPR的天然“北” N1连接的D-核糖被L-核糖代替。令人惊讶的是,L-cIDPR仍然被CD38水解,而8-Br-L-cIDPR即使在高酶浓度下也不会被切割。因此,L-cIDPR类似物的抑制活性似乎取决于C-8碱基的取代。 8-Br-L-cIDPR和8-NH2-L-cIDPR用8-Br-L-cIDPR抑制CD38介导的cADPR水解(IC50分别为7μM和21 M),效力比8-Br-cIDPR高20倍以上。相比之下,L-cIDPR的活性降低了约75倍,但效力仅比cIDPR本身低约2倍。使用分子模型研究了CD38催化残基Glu-226与“北”核糖的相互作用。我们建议即使对于L-糖底物,Glu226仍然充当催化残基。 8-Br-L-cIDPR可能以颠倒的方式非生产性地结合。结果突出了“北部”核糖在cADPR与CD38相互作用中的关键作用。

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