コーパス検索結果 (1語後でソート)
通し番号をクリックするとPubMedの該当ページを表示します
1 plant PII-like protein is a nuclear-encoded chloroplast protein.
2 here it accounted for up to 15% of the total chloroplast protein.
3 estimated to constitute <0.02% of the total chloroplast protein.
4 bunit IV of the cytochrome b6/f complex, and chloroplast proteins.
5 ion, and glycosylation, in the regulation of chloroplast proteins.
6 -responsive genes encoding mitochondrial and chloroplast proteins.
7 hared by promoters of nuclear-genes encoding chloroplast proteins.
8 cific DNA affinity chromatography from total chloroplast proteins.
9 hloroplast development and reduced levels of chloroplast proteins.
10 or embryo-defective (emb) mutants altered in chloroplast proteins.
11 rone homolog genes (CGE) in moss that encode chloroplast proteins.
12 and b suggesting a role in the expression of chloroplast proteins.
13 als modulate expression of nuclear genes for chloroplast proteins.
14 uired to maintain nuclear gene expression of chloroplast proteins.
15 ent but did not require ATP, GTP, or soluble chloroplast proteins.
16 ed with the stabilities of two other soluble chloroplast proteins.
17 ps cooperating in the rapid replenishment of chloroplast proteins.
18 anslating ribosomes, ultimately compromising chloroplast protein abundance and thus plant growth and
20 ng, reduced chloroplast translation, reduced chloroplast protein accumulation, and elevated chloropla
22 of the expression of nuclear genes encoding chloroplast proteins allows for metabolic adjustment in
23 ondrial protein to replace the function of a chloroplast protein and illustrates the plasticity of th
24 field of posttranslational modifications of chloroplast proteins and points out the importance of th
25 ombinant CPE cleaves in the absence of other chloroplast proteins, and this activity depends on metal
26 of 1,105 proteins were assigned as potential chloroplast proteins, annotated for function, and quanti
27 ic analysis indicated that nuclear genes for chloroplast proteins are down-regulated, and proteins me
32 he Arabidopsis Thf1 gene encodes an imported chloroplast protein, as shown by in vitro import and loc
35 -responsive genes encoding mitochondrial and chloroplast proteins but have little effect on more cons
36 occurs in both nuclear- and plastid-encoded chloroplast proteins, but the physiological significance
37 mplex regulatory network systems controlling chloroplast proteins by a range of posttranslational mod
43 ysis and mass spectrometry identified mainly chloroplast proteins differentially expressed between th
47 e excision repair of oxidized pyrimidines in chloroplast protein extracts of Arabidopsis thaliana.
49 ting as a molecular chaperone and protecting chloroplast proteins from thermal aggregation and inacti
51 romal chaperones, suggesting an imbalance in chloroplast protein homeostasis and a well-coordinated n
52 ysically interacts with proteins involved in chloroplast protein homeostasis based on coimmunoprecipi
54 of the putative Arabidopsis homologs for the chloroplast protein import apparatus has revealed many q
57 genetic attributes of Chlamydomonas to study chloroplast protein import by creating a series of delet
58 work showed that SP1-mediated regulation of chloroplast protein import contributes to the organellar
60 ve begun to take a genetic approach to study chloroplast protein import in Chlamydomonas reinhardtii
61 usly unrecognized roles in the regulation of chloroplast protein import in response to developmental,
62 s was developed to explore the regulation of chloroplast protein import in vivo using two independent
64 derived energy long known to be required for chloroplast protein import is delivered via the Hsp70 ch
66 of two nuclear-encoded preproteins with the chloroplast protein import machinery at three stages in
68 of complex chloroplasts provide barriers to chloroplast protein import not present in the simpler do
71 suggest that even severely impaired in vivo chloroplast protein import probably does not limit the a
73 ure applications of this system to analyzing chloroplast protein import, and provide valuable insight
76 ion arises from changes in the abundances of chloroplast proteins in Emiliania huxleyi strain CCMP 15
81 s motivated an extensive characterization of chloroplast protein N termini in Arabidopsis (Arabidopsi
83 ensive dataset of 381 nuclear genes encoding chloroplast proteins of Arabidopsis associated with embr
85 amydomonas reinhardtii cells depleted of the chloroplast protein PGRL1 was rescued by the introductio
91 cpRNPs CP31A and CP29A (for 31 kD and 29 kD chloroplast protein, respectively), associate with large
92 ing a maize (Zea mays L.) gene (Zmeftu1) for chloroplast protein synthesis elongation factor, EF-Tu,
94 f illumination, carbon source, and levels of chloroplast protein synthesis on trans-acting proteins t
95 ted by the finding that loss of RH50 renders chloroplast protein synthesis sensitive to erythromycin
96 the presence of cycloheximide indicated that chloroplast protein synthesis was broadly reduced in the
97 ersely, photosynthetic proteins and those of chloroplast protein synthesis were significantly lower i
98 tudy the role of initiation codon context in chloroplast protein synthesis, we mutated the three nucl
102 sence of Rubisco activase, a nuclear-encoded chloroplast protein that consists of two isoforms arisin
104 results suggest that DCP68 is a bifunctional chloroplast protein that participates in reductive sulfu
105 Arabidopsis FZO-LIKE (FZL) was shown as a chloroplast protein that regulates chloroplast morpholog
106 (Nicotiana tabacum) and identified a set of chloroplast proteins that are likely degraded by Clp.
110 n used to elucidate the function of numerous chloroplast proteins, the characterization of essential
115 chloroplast genes and nuclear genes encoding chloroplast protein, which sheds light on the understand
116 182-amino-acid-long putative precursor of a chloroplast protein with high sequence similarity to evo
117 wild-type fusion protein was associated with chloroplasts, proteins with transit peptide deletions re
WebLSDに未収録の専門用語(用法)は "新規対訳" から投稿できます。