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光合作用中跨类囊体巯基代谢途径的运转。

Operation of trans-thylakoid thiol-metabolizing pathways in photosynthesis.

机构信息

Department of Molecular Genetics, The Ohio State University Columbus, OH, USA ; Department of Molecular and Cellular Biochemistry, The Ohio State University Columbus, OH, USA.

出版信息

Front Plant Sci. 2013 Nov 27;4:476. doi: 10.3389/fpls.2013.00476. eCollection 2013.

Abstract

Thiol oxidation to disulfides and the reverse reaction, i.e., disulfide reduction to free thiols, are under the control of catalysts in vivo. Enzymatically assisted thiol-disulfide chemistry is required for the biogenesis of all energy-transducing membrane systems. However, until recently, this had only been demonstrated for the bacterial plasma membrane. Long considered to be vacant, the thylakoid lumen has now moved to the forefront of photosynthesis research with the realization that its proteome is far more complicated than initially anticipated. Several lumenal proteins are known to be disulfide bonded in Arabidopsis, highlighting the importance of sulfhydryl oxidation in the thylakoid lumen. While disulfide reduction in the plastid stroma is known to activate several enzymatic activities, it appears that it is the reverse reaction, i.e., thiol oxidation that is required for the activity of several lumen-resident proteins. This paradigm for redox regulation in the thylakoid lumen has opened a new frontier for research in the field of photosynthesis. Of particular significance in this context is the discovery of trans-thylakoid redox pathways controlling disulfide bond formation and reduction, which are required for photosynthesis.

摘要

巯基氧化为二硫键以及相反的反应,即二硫键还原为游离巯基,在体内受到催化剂的控制。酶辅助的巯基-二硫键化学对于所有能量转导膜系统的生物发生都是必需的。然而,直到最近,这一点仅在细菌质膜中得到证实。人们长期以来一直认为类囊体腔是空缺的,但随着人们意识到其蛋白质组远比最初预期的复杂,它现在已成为光合作用研究的前沿。已知在拟南芥中有几种类囊体腔蛋白是二硫键结合的,这突出了巯基氧化在类囊体腔中的重要性。虽然已知质体基质中的二硫键还原可以激活几种酶活性,但似乎需要相反的反应,即巯基氧化,才能使几种驻留在类囊体腔中的蛋白质具有活性。这种类囊体腔中氧化还原调节的范例为光合作用领域的研究开辟了一个新的前沿。在这方面特别重要的是发现了控制二硫键形成和还原的跨类囊体 redox 途径,这对于光合作用是必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d175/3842002/8326fc807772/fpls-04-00476-g001.jpg

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