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评估CBSX蛋白作为叶绿体硫氧还蛋白系统的调节因子

Evaluation of CBSX Proteins as Regulators of the Chloroplast Thioredoxin System.

作者信息

Murai Ryota, Okegawa Yuki, Sato Nozomi, Motohashi Ken

机构信息

Department of Frontier Life Sciences, Faculty of Life Sciences, Kyoto Sangyo University, Kyoto, Japan.

Center for Plant Sciences, Kyoto Sangyo University, Kyoto, Japan.

出版信息

Front Plant Sci. 2021 Feb 16;12:530376. doi: 10.3389/fpls.2021.530376. eCollection 2021.

Abstract

The chloroplast-localized cystathionine β-synthase X (CBSX) proteins CBSX1 and CBSX2 have been proposed as modulators of thioredoxins (Trxs). In this study, the contribution of CBSX proteins to the redox regulation of thiol enzymes in the chloroplast Trx system was evaluated both and . The biochemical studies evaluated whether CBSX proteins alter the specificities of classical chloroplastic Trx and Trx for their target proteins. However, addition of CBSX proteins did not alter the specificities of Trx and Trx for disulfide bond reduction of the photosynthesis-related major thiol enzymes, FBPase, SBPase, and NADP-MDH. analysis showed that CBSX-deficient mutants grew similarly to wild type plants under continuous normal light conditions and that CBSX deficiency did not affect photo-reduction of photosynthesis-related thiol enzymes by Trx system at several light intensities. Although CBSX proteins have been suggested as modulators in the chloroplast Trx system, our results did not support this model, at least in the cases of FBPase, SBPase, and NADP-MDH in leaves. However, fresh weights of the mutants were decreased under short day. Since Trxs regulate many proteins participating in various metabolic reactions in the chloroplast, CBSX proteins may function to regulate other chloroplast Trx target proteins, or serve as modulators in non-photosynthetic plastids of flowers. As a next stage, further investigations are required to understand the modulation of Trx-dependent redox regulation by plastidal CBSX proteins.

摘要

叶绿体定位的胱硫醚β-合酶X(CBSX)蛋白CBSX1和CBSX2被认为是硫氧还蛋白(Trxs)的调节剂。在本研究中,通过……和……评估了CBSX蛋白对叶绿体Trx系统中硫醇酶氧化还原调节的贡献。生化研究评估了CBSX蛋白是否改变经典叶绿体Trx……和Trx……对其靶蛋白的特异性。然而,添加CBSX蛋白并没有改变Trx……和Trx……对光合作用相关主要硫醇酶FBPase、SBPase和NADP-MDH二硫键还原的特异性。……分析表明,在连续正常光照条件下,CBSX缺陷型突变体的生长与野生型植物相似,并且在几种光照强度下,CBSX缺陷并不影响Trx系统对光合作用相关硫醇酶的光还原。尽管CBSX蛋白被认为是叶绿体Trx系统中的调节剂,但我们的结果并不支持该模型,至少在叶片中的FBPase、SBPase和NADP-MDH的情况下不支持。然而,在短日照下,……突变体的鲜重下降。由于Trxs调节叶绿体中参与各种代谢反应的许多蛋白质,CBSX蛋白可能起到调节其他叶绿体Trx靶蛋白的作用,或在花的非光合质体中作为调节剂。作为下一阶段,需要进一步研究以了解质体CBSX蛋白对Trx依赖性氧化还原调节的调节作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1011/7921703/9852e23d72a5/fpls-12-530376-g001.jpg

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