Belcher Bridget P, Machicao Paulo A, Tong Binqi, Ho Emily, Friedli Julia, So Brian, Bui Helen, Isobe Yosuke, Maimone Thomas J, Nomura Daniel K
Department of Chemistry, University of California, Berkeley, Berkeley, CA 94720 USA.
Novartis-Berkeley Translational Chemical Biology Institute.
bioRxiv. 2023 Feb 11:2023.02.11.528139. doi: 10.1101/2023.02.11.528139.
Chlorinated gymnastatin and dankastatin alkaloids derived from the fungal strain have been reported to possess significant anti-cancer activity but their mode of action is unknown. These members possess electrophilic functional groups that may undergo covalent bond formation with specific proteins to exert their biological activity. To better understand the mechanism of action of this class of natural products, we mapped the proteome-wide cysteine-reactivity of the most potent of these alkaloids, dankastatin B, using activitybased protein profiling chemoproteomic approaches. We identified a primary target of dankastatin B in breast cancer cells as cysteine C65 of the voltage-dependent anion selective channel on the outer mitochondrial membrane VDAC3. We demonstrated direct and covalent interaction of dankastatin B with VDAC3. VDAC3 knockdown conferred hyper-sensitivity to dankastatin B-mediated anti-proliferative effects in breast cancer cells indicating that VDAC3 was at least partially involved in the anti-cancer effects of this natural product. Our study reveals a potential mode of action of dankastatin B through covalent targeting of VDAC3 and highlight the utility of chemoproteomic approaches in gaining mechanistic understanding of electrophilic natural products.
据报道,源自该真菌菌株的氯化体操霉素和丹卡他汀生物碱具有显著的抗癌活性,但其作用方式尚不清楚。这些成员具有亲电官能团,可能与特定蛋白质形成共价键以发挥其生物活性。为了更好地理解这类天然产物的作用机制,我们使用基于活性的蛋白质谱化学蛋白质组学方法,绘制了这些生物碱中最有效的丹卡他汀B的全蛋白质组半胱氨酸反应性图谱。我们确定了乳腺癌细胞中丹卡他汀B的主要靶点是线粒体外膜电压依赖性阴离子选择性通道VDAC3的半胱氨酸C65。我们证明了丹卡他汀B与VDAC3的直接共价相互作用。VDAC3基因敲低使乳腺癌细胞对丹卡他汀B介导的抗增殖作用产生超敏反应,表明VDAC3至少部分参与了这种天然产物的抗癌作用。我们的研究揭示了丹卡他汀B通过共价靶向VDAC3的潜在作用方式,并突出了化学蛋白质组学方法在深入了解亲电天然产物作用机制方面的实用性。