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Biosensor based on overexpressed D1 protein
2005Relazione del progetto "BEEP": Assembly and application of photosystem II-based biosensors for large scale environmental screening of specific herbicides and heavy metals (QLK3-CT-2001-01629) coordinatore Dr. Maria Teresa Giardi Overexpression of D1 Chlamydomonas reinhardtii in E.
Giannino D., Testone G.
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Mechanism of the Light Dependent Turnover of the D1 Protein
1990The D1 protein is one of the major components of reaction center II (RCII) and contains within one of its membrane intrinsic loops the binding site of Qb (1). In light exposed chloroplasts in vivo, the protein is specifically and continuously degraded and resynthesized (turnover, (2)). The synthesis of D1 appears to be subject to translation control (3)
Noam Adir +3 more
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Photodamage and D1 Protein Turnover in Photosystem II
2006Photosystem II is frequently undergoing photoinduced damages targeted to its reaction center in a process normally referred to as photoinhibition. Photosynthesis is maintained through an intricate repair mechanism involving degradation of the damaged D1 reaction center protein and insertion of a new protein copy into the photosystem.
Bertil Andersson, Eva-Mari Aro
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Mechanisms, regulation and functions of the unfolded protein response
Nature Reviews Molecular Cell Biology, 2020Claudio Hetz +2 more
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Functions and mechanisms of non-histone protein acetylation
Nature Reviews Molecular Cell Biology, 2018Takeo Narita +2 more
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The unfolded protein response: controlling cell fate decisions under ER stress and beyond
Nature Reviews Molecular Cell Biology, 2012Claudio Hetz, Hetz Claudio
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Advances in protein structure prediction and design
Nature Reviews Molecular Cell Biology, 2019Philip Bradley +2 more
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The amyloid state and its association with protein misfolding diseases
Nature Reviews Molecular Cell Biology, 2014Hoi Kei Chiu +2 more
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Cellular strategies for controlling protein aggregation
Nature Reviews Molecular Cell Biology, 2010Bernd Bukau, Axel Mogk, Mogk Axel
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Vertebrate protein glycosylation: diversity, synthesis and function
Nature Reviews Molecular Cell Biology, 2012Michael Tiemeyer +2 more
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