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两种液泡分选信号对渥曼青霉素的不同敏感性表明烟草细胞中存在不同的分选机制。

Different sensitivity to wortmannin of two vacuolar sorting signals indicates the presence of distinct sorting machineries in tobacco cells.

作者信息

Matsuoka K, Bassham D C, Raikhel N V, Nakamura K

机构信息

Laboratory of Biochemistry, School of Agricultural Sciences, Nagoya University, Japan.

出版信息

J Cell Biol. 1995 Sep;130(6):1307-18. doi: 10.1083/jcb.130.6.1307.

Abstract

Vacuolar matrix proteins in plant cells are sorted from the secretory pathway to the vacuoles at the Golgi apparatus. Previously, we reported that the NH2-terminal propeptide (NTPP) of the sporamin precursor and the COOH-terminal propeptide (CTPP) of the barley lectin precursor contain information for vacuolar sorting. To analyze whether these propeptides are interchangeable, we expressed constructs consisting of wild-type or mutated NTPP with the mature part of barley lectin and sporamin with CTPP and mutated NTPP in tobacco BY-2 cells. The vacuolar localization of these constructs indicated that the signals were interchangeable. We next analyzed the effect of wortmannin, a specific inhibitor of mammalian phosphatidylinositol (PI) 3-kinase on vacuolar delivery by NTPP and CTPP in tobacco cells. Pulse-chase analysis indicated that 33 microM wortmannin caused almost complete inhibition of CTPP-mediated transport to the vacuoles, while NTPP-mediated transport displayed almost no sensitivity to wortmannin at this concentration. This indicates that there are at least two different mechanisms for vacuolar sorting in tobacco cells, and the CTPP-mediated pathway is sensitive to wortmannin. We compared the dose dependencies of wortmannin on the inhibition of CTPP-mediated vacuolar delivery of proteins and on the inhibition of the synthesis of phospholipids in tobacco cells. Wortmannin inhibited PI 3- and PI 4-kinase activities and phospholipid synthesis. Missorting caused by wortmannin displays a dose dependency that is similar to the dose dependency for the inhibition of synthesis of PI 4-phosphate and major phospholipids. This is different, however, than the inhibition of synthesis of PI 3-phosphate. Thus, the synthesis of phospholipids could be involved in CTPP-mediated vacuolar transport.

摘要

植物细胞中的液泡基质蛋白在高尔基体从分泌途径分选至液泡。此前,我们报道了孢粉素前体的氨基末端前肽(NTPP)和大麦凝集素前体的羧基末端前肽(CTPP)包含液泡分选信息。为分析这些前肽是否可互换,我们在烟草BY-2细胞中表达了由野生型或突变型NTPP与大麦凝集素成熟部分组成的构建体,以及带有CTPP和突变型NTPP的孢粉素构建体。这些构建体的液泡定位表明信号是可互换的。接下来,我们分析了渥曼青霉素(一种哺乳动物磷脂酰肌醇(PI)3-激酶的特异性抑制剂)对烟草细胞中NTPP和CTPP介导的液泡转运的影响。脉冲追踪分析表明,33 microM的渥曼青霉素几乎完全抑制了CTPP介导的向液泡的转运,而在此浓度下NTPP介导的转运对渥曼青霉素几乎不敏感。这表明烟草细胞中液泡分选至少有两种不同机制,且CTPP介导的途径对渥曼青霉素敏感。我们比较了渥曼青霉素对CTPP介导的蛋白质液泡转运抑制作用和对烟草细胞中磷脂合成抑制作用的剂量依赖性。渥曼青霉素抑制PI 3-激酶和PI 4-激酶活性以及磷脂合成。渥曼青霉素导致的分选错误呈现出与抑制PI 4-磷酸和主要磷脂合成相似的剂量依赖性。然而,这与抑制PI 3-磷酸的合成不同。因此,磷脂合成可能参与CTPP介导的液泡转运。

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