Role of Phospholipid Transfer Protein in the Exchange of Phospholipids between Microsomes and Chloroplasts
スポンサーリンク
概要
- 論文の詳細を見る
When microsomes containing phosphatidylcholine labelled with [1-^<14>C]-linoleate were incubated with pea or spinach chloroplasts, active transfer of this phospholipid took place in the presence of phospholipid transfer protein. This transfer also was demonstrated by incubating unlabelled microsomes, chloroplasts and the phospholipid transfer protein in the presence of [1-^<14>C]-acetate. The reconstituted systems could synthesize fatty acids which were acylated in microsomal phosphatidylcholine. The transfer of this phospholipid to chloroplasts is mediated by the transfer protein. Our results suggest a role for phospholipid transfer protein in the synthesis of chloroplast lipids.
- 日本植物生理学会の論文
著者
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Drapier D
Laboratoire De Physiologie Cellulaire (e.r.a. 323) Universite P. 〓 M. Curie
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Kader J‐c
Univ. Pierre Et Marie Curie Paris Fra
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Drapier Dominique
Laboratoire De Physiologie Cellulaire (e.r.a. 323) Universite P. 〓 M. Curie
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Dubacq Jean-Paul
Laboratoire de Physiologie Cellulaire et Moleculaire
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Tremolieres Antoine
Laboratoire du Phytotron, C.N.R.S.
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Kader Jean-Claude
Laboratoire de Physiologie Cellulaire (E.R.A. 323), Universite P. 〓 M. Curie
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Dubacq Jean-paul
Laboratoire De Physiologie Cellulaire (e.r.a. 323) Universite P. 〓 M. Curie
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Tremolieres Antoine
Laboratoire Du Phytotron C.n.r.s.
関連論文
- Isolation and Biochemical Characteristics of Protoplasts of Jojoba (Simmond sia chinensis (Link) Schneider)
- Role of Phospholipid Transfer Protein in the Exchange of Phospholipids between Microsomes and Chloroplasts
- Polyunsatuated Fatty Acid Synthesis by a Mixture of Chloroplasts and Microsomes from Spinach Leaves : Evidence for Two Distinct Pathways of the Biosynthesis of Trienoic Acids
- In Situ and IAA-Induced Cell Elongation is Correlated to the Oleoyl Phosphatidylcholine Content along the Vigna radiata Hypocotyl