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丙戊酸盐通过降低肌醇-3-磷酸合酶的表达来调节肌醇合成。

Valproate regulates inositol synthesis by reducing expression of myo-inositol-3-phosphate synthase.

机构信息

Department of Biological Sciences, Wayne State University, Detroit, MI, 48202, USA.

Department of Chemistry, Wayne State University, Detroit, MI, 48202, USA.

出版信息

Sci Rep. 2023 Sep 8;13(1):14844. doi: 10.1038/s41598-023-41936-2.

Abstract

Inositol depletion is a hypothesized mechanism of action of mood stabilization drugs used in the treatment of bipolar disorder. It was previously reported that the mood stabilizer valproate (VPA) increased phosphorylation of myo-inositol-3-phosphate synthases (MIPS), the rate limiting enzyme of inositol synthesis. Phosphosites were identified and examination of site-directed mutants suggested that phosphorylation leads to decreased enzymatic activity. In this study, we examined the extent of MIPS phosphorylation in response to VPA and used two interaction screens to identify protein kinases that interact with MIPS. Using an epitope tagged MIPS construct, we determined the fraction of phosphorylated MIPS to be very low (less than 2% of total), and we could not detect phosphorylation of untagged MIPS in response to VPA. In vitro analyses of phosphorylation revealed that putative protein kinases, PKC and CKII, have low specificity toward MIPS. These findings suggest that VPA likely depletes inositol via a mechanism other than MIPS phosphorylation. Consistent with this, mRNA levels of the MIPS-encoding gene INO1 and MIPS protein levels were significantly reduced during the mid-log growth phase in response to VPA treatment. These findings suggest that the mechanism whereby VPA causes inositol depletion is by reducing expression of the rate-limiting enzyme MIPS.

摘要

肌醇耗竭是用于治疗双相情感障碍的心境稳定剂的作用机制假说。先前有报道称心境稳定剂丙戊酸钠(VPA)增加了肌醇-3-磷酸合酶(MIPS)的磷酸化,MIPS 是肌醇合成的限速酶。鉴定了磷酸化位点,并对定点突变体进行了研究,表明磷酸化导致酶活性降低。在这项研究中,我们研究了 VPA 对 MIPS 磷酸化的反应程度,并使用了两种相互作用筛选来鉴定与 MIPS 相互作用的蛋白激酶。使用带有表位标签的 MIPS 构建体,我们确定磷酸化 MIPS 的比例非常低(不到总 MIPS 的 2%),并且我们无法检测到 VPA 对未标记的 MIPS 的磷酸化。体外磷酸化分析表明,假定的蛋白激酶 PKC 和 CKII 对 MIPS 的特异性很低。这些发现表明,VPA 可能通过不同于 MIPS 磷酸化的机制耗竭肌醇。与此一致的是,在 VPA 处理期间,MIPS 编码基因 INO1 的 mRNA 水平和 MIPS 蛋白水平在对数中期生长阶段显著降低。这些发现表明,VPA 引起肌醇耗竭的机制是通过降低限速酶 MIPS 的表达。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ed3/10491628/2712dbc0b246/41598_2023_41936_Fig1_HTML.jpg

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