Rottlerin is a natural product isolated from Mallotus philippinensis. This polyphenolic compound, originally described as a selective inhibitor of PKCδ, can inhibit many other PKC-unrelated kinases and has a number of biological actions, including mitochondrial uncoupling effects. We recently found that Rottlerin inhibits the transcription factor nuclear factor κB in different cell types, causing downregulation of cyclin D1 and growth arrest. The present study was carried out to clarify the surprising lack of effect of Rottlerin on MCF-7 cell viability, assessed by the 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyl tetrazolium bromide (MTT) test. We found that Rottlerin causes overestimation of the MTT test, leading to inconsistent results between cell number and cell viability. Rottlerin, however, strongly differs from other antioxidant polyphenols, which directly reduce tetrazolium salts, since it does not exhibit any reactivity toward the tetrazolium salts in vitro nor does it modulate lactate dehydrogenase activity. The interference in the MTT assay occurred only in cultured cells, concomitantly with a decrease in the energy charge. Because the same MTT overestimation was observed in the presence of uncoupling agents, we conclude that the Rottlerin artifact is linked to its uncoupling action that, by accelerating oxidative chain, accidentally results in enhanced MTT reduction. These results suggest caution in the use of the MTT assay in the presence of Rottlerin and uncouplers in general.
Key Words: Rottlerin - MCF-7 cell - MTT - LDH - FCCP - mitochondrial uncoupling
Introduction
Rottlerin (also called mallotoxin or kamala), is a 5,7-dihydroxy-2,2-dimethyl-6-(2,4,6-trihydroxy-3-methyl-5-acetylbenzyl)-8-cinnamoyl-l,2- chromene, a pigmented plant product isolated from Mallotus philippinensis (Fig. 1 ). Since 1994, Rottlerin has been used as a PKCδ inhibitor (1) although the selectivity of Rottlerin in inhibiting the PKCδ isoform has been recently questioned (2, 3) and ascribed to a likely indirect effect mediated by mitochondrial uncoupling and decrease in ATP content (4). Our laboratory showed for the first time that Rottlerin can prevent, independently from PKC, the activation of the transcription factor nuclear factor κB (NFκB), induced by either phorbol ester or oxidative stress in MCF-7 cells (5), HaCaT keratinocytes (6) and HT-29 cells (unpublished results), whose growth resulted to be arrested because of downregulation of cyclin D1, at both the protein and mRNA levels. Although the molecular mechanism is not definitively clarified, the prevention of the NFκB activation process was likely achieved through both Rottlerin inhibition of protein kinases (7, 8) and Rottlerin free radicals scavenging activity (9). Indeed, NFκB can be activated by a number of pathways and is a redox-sensitive transcription factor for key molecules involved in inflammation, cancer progression, cell cycle control, and protection against apoptosis (10).
Fig. 1 Rottlerin structure.
However, in our previous paper (5), we found that MCF-7 cell viability was not altered by a 24-h Rottlerin treatment, a result that was in evident conflict with the inhibition of NFkB and cell proliferation, as evaluated by [3H]-thymidine incorporation into DNA. Since the measurement of cell viability was based on the reduction of 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyl tetrazolium bromide (MTT) to formazan crystal by mitochondrial dehydrogenases (11), in the current study we revisited our previous results, checking for a possible interference of Rottlerin in the MTT assay.
6月30日,上海交通大學首屆技術轉移碩士(MTT)畢業典禮暨學位授予儀式舉行。這些畢業生是全國首批國家急需的擁有技術轉移專業學位的專門人才。典禮現場。活動方供圖據介紹,上海交大于2021年獲教育部批準......
近日,服務科學領域的全球領導者賽默飛世爾科技(以下簡稱賽默飛)宣布,在達成收購意向兩個月之后,賽默飛以28億美元、折合人民幣約190億元的價格,完成了對TheBindingSiteGroup的全現金收......
將 AssayMAP 的使用范圍擴展至法規監管環境2022年11月28日,北京——安捷倫科技有限公司(紐約證交所:A)近日宣布推出AssayMAPBravo蛋白質樣品前處理Work......
11月15日,施普林格·自然和TheLens平臺宣布結成重要的合作伙伴關系,以更深入地揭示學術研究和數據如何能通過經濟和社會成效,加速推動創新的問題解決方式。通過將科學、投資和企業領域的開放數據更好地......
10月7日,上海交通大學中銀科技金融學院以線上線下結合形式,舉辦“科金創享”產教融合發展論壇暨上海交大技術轉移碩士(MTT)項目發布。MTT項目課程發布上海交大供圖“上海交大設立全國首個技術轉移專業碩......
萬物蓬勃的7月里迎來了2022年ANTOP獎的申報和評審工作。由島津企業管理(中國)有限公司申報的“3CoinONE全新體驗氣袋進樣器”ANTOP獎進入專家評審階段。獎項名稱:3CoinONE全新體驗......
青島青源峰達太赫茲科技有限公司研發團隊在國際頂級期刊《TrendsinBiotechnology》(譯名:《生物技術趨勢》)在線發表題為“THzmedicalimaging:frominvitroto......
蛋白質作為構成人體組織器官的支架和主要物質,在人體生命活動中起著重要作用。蛋白質的相互作用能產生許多效應,如形成特異底物作用通道、生成新的結合位點、失活、作用底物專一性和動力學變化等,細胞的代謝、信號......
2021年9月9日,無錫臻和生物科技有限公司(以下簡稱“臻和科技”)與美國VyantBio公司簽署TissueofOrigin?(以下簡稱“TOO?”)全球權益和ZL轉讓協議,全資收購這款唯一獲FDA......
2021年7月20日,JournalofCellularPhysiology及JournalofCellularBiochemistry同時撤回了中國學者49篇文章。從2019年開始,Journalo......