3.8 Article

Piperine Derivatives Enhance Fusion and Axonal Transport of Mitochondria by Activating Mitofusins

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CHEMISTRY-SWITZERLAND
卷 4, 期 3, 页码 655-668

出版社

MDPI
DOI: 10.3390/chemistry4030047

关键词

piperine; mitochondrial fusion; mitochondrial transport; mitofusins; Charcot-Marie-Tooth disease

资金

  1. NINDS STTR [R41NS113642, R42NS115184]
  2. National Institute of Neurological Disorders and Stroke of the National Institutes of Health

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Piperine analogs can activate mitofusin, promote mitochondrial fusion, and improve mitochondrial transport. This finding contributes to the exploration of new pharmaceutical advantages.
Piperine (1-piperoylpiperidine) is the major pungent component of black pepper (Piper nigrum) and exhibits a spectrum of pharmacological activities. The molecular bases for many of piperine's biological effects are incompletely defined. We noted that the chemical structure of piperine generally conforms to a pharmacophore model for small bioactive molecules that activate mitofusin (MFN)-mediated mitochondrial fusion. Piperine, but not its isomer chavicine, stimulated mitochondrial fusion in MFN-deficient cells with EC50 of similar to 8 nM. We synthesized piperine analogs having structural features predicted to optimize mitofusin activation and defined structure-activity relationships (SAR) in live-cell mitochondrial elongation assays. When optimal spacing was maintained between amide and aromatic groups the derivatives were potent mitofusin activators. Compared to the prototype phenylhexanamide mitofusin activator, 2, novel molecules containing the piperidine structure of piperine exhibited markedly enhanced passive membrane permeability with no loss of fusogenic potency. Lead compounds 5 and 8 enhanced mitochondrial motility in cultured murine Charcot-Marie-Tooth disease type 2A (CMT2A) neurons, but only 8 improved mitochondrial transport in sciatic nerve axons of CMT2A mice. Piperine analogs represent a new chemical class of mitofusin activators with potential pharmaceutical advantages.

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