Title : Zoledronic acid-induced IPP/ApppI production in vivo.

Pub. Date : 2007 Sep 8

PMID : 17850825






5 Functional Relationships(s)
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1 However, our studies revealed that N-BPs induce formation of a novel pro-apoptotic ATP analog (ApppI), as a consequence of the inhibition of FPP synthase in the mevalonate pathway, and the subsequent accumulation of isopentenyl pyrophosphate (IPP) in vitro. n-bps farnesyl diphosphate synthetase Mus musculus
2 However, our studies revealed that N-BPs induce formation of a novel pro-apoptotic ATP analog (ApppI), as a consequence of the inhibition of FPP synthase in the mevalonate pathway, and the subsequent accumulation of isopentenyl pyrophosphate (IPP) in vitro. Adenosine Triphosphate farnesyl diphosphate synthetase Mus musculus
3 However, our studies revealed that N-BPs induce formation of a novel pro-apoptotic ATP analog (ApppI), as a consequence of the inhibition of FPP synthase in the mevalonate pathway, and the subsequent accumulation of isopentenyl pyrophosphate (IPP) in vitro. apppi farnesyl diphosphate synthetase Mus musculus
4 However, our studies revealed that N-BPs induce formation of a novel pro-apoptotic ATP analog (ApppI), as a consequence of the inhibition of FPP synthase in the mevalonate pathway, and the subsequent accumulation of isopentenyl pyrophosphate (IPP) in vitro. Mevalonic Acid farnesyl diphosphate synthetase Mus musculus
5 Increasing IPP/ApppI accumulation was determined up to 7 days after drug injection, indicating prolonged FPP synthase inhibition by zoledronic acid. Zoledronic Acid farnesyl diphosphate synthetase Mus musculus