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Crystallographic Studies Evidencing the High Energy Tolerance to Disrupting the Interface Disulfide Bond of Thioredoxin 1 from White Leg Shrimp Litopenaeus vannamei

机译:晶体学研究证明高能耐受破坏白对虾凡纳滨对虾硫氧还蛋白1的界面二硫键。

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摘要

Thioredoxin (Trx) is a small 12-kDa redox protein that catalyzes the reduction of disulfide bonds in proteins from different biological systems. A recent study of the crystal structure of white leg shrimp thioredoxin 1 from Litopenaeus vannamei (LvTrx) revealed a dimeric form of the protein mediated by a covalent link through a disulfide bond between Cys73 from each monomer. In the present study, X-ray-induced damage in the catalytic and the interface disulfide bond of LvTrx was studied at atomic resolution at different transmission energies of 8% and 27%, 12.8 keV at 100 K in the beamline I-24 at Diamond Light Source. We found that at an absorbed dose of 32 MGy, the X-ray induces the cleavage of the disulfide bond of each catalytic site; however, the interface disulfide bond was cleaved at an X-ray adsorbed dose of 85 MGy; despite being the most solvent-exposed disulfide bond in LvTrx (~50 Å2). This result clearly established that the interface disulfide bond is very stable and, therefore, less susceptible to being reduced by X-rays. In fact, these studies open the possibility of the existence in solution of a dimeric LvTrx.
机译:硫氧还蛋白(Trx)是一种12kDa的小型氧化还原蛋白,可催化来自不同生物系统的蛋白质中二硫键的还原。南美白对虾(LvTrx)的白腿虾硫氧还蛋白1(LvTrx)的晶体结构的最新研究表明,该蛋白的二聚体形式是通过每个单体的Cys73之间的二硫键通过共价键介导的。在本研究中,研究了Xv诱导的LvTrx催化和界面二硫键的损伤,其原子分辨率为8%和27%的不同透射能,在100 K下的12.8 keV,在钻石的I-24光束中光源。我们发现,在32 MGy的吸收剂量下,X射线会诱导每个催化位点的二硫键裂解。然而,在85 MGy的X射线吸收剂量下,界面二硫键断裂。尽管是LvTrx中溶剂暴露程度最高的二硫键(〜50Å 2 )。该结果清楚地证明了界面二硫键非常稳定,因此,不太容易被X射线还原。实际上,这些研究打开了二聚体LvTrx在溶液中存在的可能性。

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