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Phosphorylation of the Chloroplastic Metalloprotease FtsH in Arabidopsis Characterized by Phos-Tag SDS-PAGE
被引:18
作者:
Kato, Yusuke
[1
]
Sakamoto, Wataru
[1
]
机构:
[1] Okayama Univ, IPSR, Kurashiki, Okayama, Japan
来源:
FRONTIERS IN PLANT SCIENCE
|
2019年
/
10卷
基金:
日本学术振兴会;
关键词:
FtsH;
thylakoid;
chloroplast;
protein phosphorylation;
protease;
photosynthesis;
PHOTOSYSTEM-II REPAIR;
PHOSPHOPROTEOME PROFILING REVEALS;
PROTEIN-PHOSPHORYLATION;
STATE TRANSITIONS;
LEAF VARIEGATION;
QUANTITATIVE PHOSPHOPROTEOMICS;
LIGHT ACCLIMATION;
PLASMA-MEMBRANE;
QUALITY-CONTROL;
D1;
DEGRADATION;
D O I:
10.3389/fpls.2019.01080
中图分类号:
Q94 [植物学];
学科分类号:
071001 ;
摘要:
FtsH is an essential ATP-dependent metalloprotease for protein quality control in the thylakoid membrane of Arabidopsis thaliana chloroplasts. It is required for chloroplast development during leaf growth, and particularly for the specific degradation of photodamaged D1 protein in the photosystem II (PSII) complex to maintain photosynthesis activity. In the thylakoid membrane, the reversible phosphorylation of proteins is known to control the activity and remodeling of photosynthetic complexes, and previous studies implicate that FtsH is also phosphorylated. We therefore assessed the phosphorylation status of FtsH and its possible role in the regulatory mechanism in this study. The phosphorylation level of FtsHs that compose the FtsH heterohexameric complex was investigated by phosphateaffinity gel electrophoresis using a Phos-Tag molecule. Phos-tag SDS-PAGE of thylakoid proteins and subsequent immunoblot analysis showed that both type A (FtsH1/5) and type B (FtsH2/8) subunits were separable into phosphorylated and non-phosphorylated forms. Neither different light conditions nor the lack of two major thylakoid kinases, STN7 and STN8, resulted in any clear difference in FtsH phosphorylation, suggesting that this process is independent of the light-dependent regulation of photosynthesis-related proteins. Site-directed mutagenesis of putatively phosphorylated Ser or Thr residues into Ala demonstrated that Ser-212 may play a role in FtsH stability in the thylakoid membranes. Different phosphorylation status of FtsH oligomers analyzed by two-dimensional clearnative/Phos-tag SDS-PAGE implied that phosphorylation partially affects FtsH complex formation or its stability.
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页数:13
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