Page 116 - ebook
P. 116

[A. Biochemistry/Molecular Biology] A-58



             Human microbiome-derived SCFAs coordinate a proteasomal


                   degradation for targeting EHMT2 in colorectal cancer




        Tae Young Ryu¹, Kwangho Kim¹, Tae-Su Han¹, Jinkwon Lee¹, Mooseung Lee¹, Dae-Soo Kim¹, Mi-

                                              Young Son¹, Hyun-Soo Cho¹*

                                   ¹Stem Cell Research Center, KRIBB, Daejeon 34141, Korea




        Human microbiome play an essential role in human immune system, food digestion, and protection from harmful

        bacterial by colonization in human intestine. Recently, although the human microbiome has been shown to affect
        colorectal cancer (CRC) treatment, the mode of action (MOA) between the microbiome and CRC is still unclear. In

        this study, we showed that propionate suppressed CRC growth by promoting proteasomal degradation of EHMT2
        through HECT domain E3 ubiquitin protein ligase 2 (HECTD2) upregulation. Moreover, downregulation of EHMT2

        reduced  the  level  of  H3K9me2  on  the  promoter  region  of  TNFAIP1  as  a  novel  direct  target  of  EHMT2,  and
        subsequently, upregulation  of  TNFAIP1  induced  apoptosis  of  CRC  cells.  Moreover,  using  culture  medium  of

        Bacteroides thetaiotaomicron,  we confirmed EHMT2  down-regulation  via  up-regulation of HECTD2,  and  up-
        regulation of TNFAIP1 expression by exchange of H3K9 di-methylation. Finally, we performed an in vivo study using

        BIX01294 to inactivate EHMT2 and observed a reduction in the tumor size of the CRC xenograft models. Thus we
        suggest anticancer effects of propionate and EHMT2 as therapeutic targets for colon cancer treatment, and we will

        provide the possibility for synergistic effects of an EHMT2 inhibitor and microbiome in CRC treatment.
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