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光系统 II 蛋白清除和 FtsH 在硅藻假鱼腥藻中的功能。

Photosystem II protein clearance and FtsH function in the diatom Thalassiosira pseudonana.

机构信息

Department of Chemistry and Biochemistry, Mount Allison University, Sackville, NB E4L 1G7, Canada.

出版信息

Photosynth Res. 2013 May;115(1):43-54. doi: 10.1007/s11120-013-9809-2. Epub 2013 Mar 16.

Abstract

All oxygenic photoautotrophs suffer photoinactivation of their Photosystem II complexes, at a rate driven by the instantaneous light level. To maintain photosynthesis, PsbA subunits are proteolytically removed from photoinactivated Photosystem II complexes, primarily by a membrane-bound FtsH protease. Diatoms thrive in environments with fluctuating light, such as coastal regions, in part because they enjoy a low susceptibility to photoinactivation of Photosystem II. In a coastal strain of the diatom Thalassiosira pseudonana growing across a range of light levels, active Photosystem II represents only about 42 % of the total Photosystem II protein, with the remainder attributable to photoinactivated Photosystem II awaiting recycling. The rate constant for removal of PsbA protein increases with growth light, in parallel with an increasing content of the FtsH protease relative to the substrate PsbA. An offshore strain of Thalassiosira pseudonana, originating from a more stable light environment, had a lower content of FtsH and slower rate constants for removal of PsbA. We used this data to generate the first estimates for in vivo proteolytic degradation of photoinactivated PsbA per FtsH6 protease, at ~3.9 × 10(-2) s(-1), which proved consistent across growth lights and across the onshore and offshore strains.

摘要

所有需氧型光合自养生物的光系统 II 复合物都会遭受光抑制,其抑制速率取决于瞬时光强。为了维持光合作用,光系统 II 复合物中的 PsbA 亚基会被一种膜结合的 FtsH 蛋白酶进行蛋白水解去除,主要是在光抑制条件下。硅藻在光照波动的环境中茁壮成长,如沿海地区,部分原因是它们对光系统 II 光抑制的敏感性较低。在一种生长于不同光照条件下的沿海硅藻——拟菱形藻中,活性光系统 II 仅占总光系统 II 蛋白的约 42%,其余的归因于有待回收的光抑制光系统 II。PsbA 蛋白的去除速率常数随生长光的增加而增加,与 FtsH 蛋白酶相对于底物 PsbA 的含量增加呈平行关系。一种来自更稳定光照环境的近海拟菱形藻,其 FtsH 含量较低,PsbA 去除的速率常数也较慢。我们利用这些数据,首次估算了每一种 FtsH6 蛋白酶体内光抑制 PsbA 的蛋白水解降解速率,约为 3.9×10(-2)s(-1),这一速率在不同生长光强下以及在近岸和近海种群中都是一致的。

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