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1
Sugars modulate an unusual mode of control of the cell-wall invertase gene (Incw1) through its 3' untranslated region in a cell suspension culture of maize.在玉米细胞悬浮培养物中,糖类通过细胞壁转化酶基因(Incw1)的3'非翻译区调节一种不同寻常的控制模式。
Proc Natl Acad Sci U S A. 1999 Aug 31;96(18):10512-7. doi: 10.1073/pnas.96.18.10512.
2
Characterization of two members of the maize gene family, Incw3 and Incw4, encoding cell-wall invertases.玉米基因家族的两个成员Incw3和Incw4的特性分析,这两个成员编码细胞壁转化酶。
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3
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4
Genetic control of cell wall invertases in developing endosperm of maize.玉米发育胚乳中细胞壁转化酶的遗传控制
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Co-ordinated induction of mRNAs for extracellular invertase and a glucose transporter in Chenopodium rubrum by cytokinins.细胞分裂素对藜麦中胞外转化酶和葡萄糖转运蛋白mRNA的协同诱导作用。
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7
Induction of apoplastic invertase of Chenopodium rubrum by D-glucose and a glucose analog and tissue-specific expression suggest a role in sink-source regulation.D-葡萄糖和一种葡萄糖类似物对藜红胞质外转化酶的诱导作用以及组织特异性表达表明其在源库调节中发挥作用。
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Seed coat-associated invertases of fava bean control both unloading and storage functions: cloning of cDNAs and cell type-specific expression.蚕豆种皮相关转化酶调控卸载和储存功能:cDNA克隆及细胞类型特异性表达
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9
Characterization of tobacco protein kinase NPK5, a homolog of Saccharomyces cerevisiae SNF1 that constitutively activates expression of the glucose-repressible SUC2 gene for a secreted invertase of S. cerevisiae.烟草蛋白激酶NPK5的特性研究,它是酿酒酵母SNF1的同源物,可组成性激活酿酒酵母分泌型转化酶的葡萄糖可阻遏型SUC2基因的表达。
Mol Cell Biol. 1994 May;14(5):2958-65. doi: 10.1128/mcb.14.5.2958-2965.1994.
10
Regulation and tissue-specific distribution of mRNAs for three extracellular invertase isoenzymes of tomato suggests an important function in establishing and maintaining sink metabolism.番茄三种胞外转化酶同工酶mRNA的调控及组织特异性分布表明其在建立和维持库代谢中具有重要功能。
Plant Physiol. 1997 Sep;115(1):273-82. doi: 10.1104/pp.115.1.273.

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Targeting the Gene to Explore the Role of Invertases in Sucrose Transport in Roots and during Infection.靶向该基因以探究转化酶在根系蔗糖运输及感染过程中的作用。
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本文引用的文献

1
cDNAs of two non-allelic sucrose synthase genes in maize: cloning, expression, characterization and molecular mapping of the sucrose synthase-2 gene.玉米中两个非等位蔗糖合酶基因的 cDNA:蔗糖合酶-2 基因的克隆、表达、特性和分子作图。
Plant Mol Biol. 1988 May;10(3):215-24. doi: 10.1007/BF00027398.
2
Callus formation from protoplasts of a maize cell culture.愈伤组织形成于玉米细胞培养物的原生质体。
Theor Appl Genet. 1981 Nov;59(6):341-4. doi: 10.1007/BF00276446.
3
Cytosolic cycles regulate the turnover of sucrose in heterotrophic cell-suspension cultures of Chenopodium rubrum L.细胞质循环调节藜属异养细胞悬浮培养物中蔗糖的周转。
Planta. 1990 Sep;182(2):223-31. doi: 10.1007/BF00197115.
4
Sucrose storage in cell suspension cultures of Saccharum sp. (sugarcane) is regulated by a cycle of synthesis and degradation.甘蔗细胞悬浮培养物中的蔗糖储存受合成和降解循环的调节。
Planta. 1991 Dec;183(1):31-9. doi: 10.1007/BF00197564.
5
A novel sucrose synthase pathway for sucrose degradation in cultured sycamore cells.一种用于悬浮培养的梧桐细胞中蔗糖降解的新型蔗糖合酶途径。
Plant Physiol. 1986 Aug;81(4):1008-13. doi: 10.1104/pp.81.4.1008.
6
The Maize Invertase-Deficient miniature-1 Seed Mutation Is Associated with Aberrant Pedicel and Endosperm Development.玉米蔗糖酶缺陷型微型-1种子突变与异常的花梗和胚乳发育有关。
Plant Cell. 1992 Mar;4(3):297-305. doi: 10.1105/tpc.4.3.297.
7
Sugar Levels Modulate Differential Expression of Maize Sucrose Synthase Genes.糖水平调节玉米蔗糖合酶基因的差异表达。
Plant Cell. 1992 Jan;4(1):59-69. doi: 10.1105/tpc.4.1.59.
8
Carbon Catabolite Repression Regulates Glyoxylate Cycle Gene Expression in Cucumber.碳分解代谢物阻遏调控黄瓜中乙醛酸循环基因的表达。
Plant Cell. 1994 May;6(5):761-772. doi: 10.1105/tpc.6.5.761.
9
A Similar Dichotomy of Sugar Modulation and Developmental Expression Affects Both Paths of Sucrose Metabolism: Evidence from a Maize Invertase Gene Family.蔗糖调节与发育表达的相似二分法影响蔗糖代谢的两条途径:来自玉米转化酶基因家族的证据。
Plant Cell. 1996 Jul;8(7):1209-1220. doi: 10.1105/tpc.8.7.1209.
10
The Miniature1 Seed Locus of Maize Encodes a Cell Wall Invertase Required for Normal Development of Endosperm and Maternal Cells in the Pedicel.玉米的微型1种子基因座编码一种细胞壁转化酶,该酶是胚乳和花梗中母细胞正常发育所必需的。
Plant Cell. 1996 Jun;8(6):971-983. doi: 10.1105/tpc.8.6.971.

在玉米细胞悬浮培养物中,糖类通过细胞壁转化酶基因(Incw1)的3'非翻译区调节一种不同寻常的控制模式。

Sugars modulate an unusual mode of control of the cell-wall invertase gene (Incw1) through its 3' untranslated region in a cell suspension culture of maize.

作者信息

Cheng W H, Taliercio E W, Chourey P S

机构信息

Program in Plant Molecular and Cellular Biology, University of Florida, Gainesville FL, 32611-0680, USA.

出版信息

Proc Natl Acad Sci U S A. 1999 Aug 31;96(18):10512-7. doi: 10.1073/pnas.96.18.10512.

DOI:10.1073/pnas.96.18.10512
PMID:10468640
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC17920/
Abstract

We show here that a cell-wall invertase encoded by the Incw1 gene is regulated at both the transcriptional and posttranscriptional levels by sugars in a heterotrophic cell suspension culture of maize. The Incw1 gene encoded two transcripts: Incw1-S (small) and Incw1-L (large); the size variation was attributable to different lengths in the 3' untranslated region. Both metabolizable and nonmetabolizable sugars induced Incw1-L RNA apparently by default. However, only the metabolizable sugars, sucrose and D-glucose, were associated with the increased steady-state abundance of Incw1-S RNA, the concomitant increased levels of INCW1 protein and enzyme activity, and the downstream metabolic repression of the sucrose synthase gene, Sh1. Conversely, nonmetabolizable sugars, including the two glucose analogs 3-O-methylglucose and 2-deoxyglucose, induced greater steady-state levels of the Incw1-L RNA, but this increase did not lead to either an increase in the levels of the INCW1 protein/enzyme activity or the repression of the Sh1 gene. We conclude that sugar sensing and the induction of the Incw1 gene is independent of the hexokinase pathway. More importantly, our results also suggest that the 3' untranslated region of the Incw1 gene acts as a regulatory sensor of carbon starvation and may constitute a link between sink metabolism and cellular translation in plants.

摘要

我们在此表明,在玉米异养细胞悬浮培养物中,由Incw1基因编码的一种细胞壁转化酶在转录和转录后水平均受糖类调控。Incw1基因编码两种转录本:Incw1-S(小)和Incw1-L(大);大小差异归因于3'非翻译区的不同长度。可代谢糖和不可代谢糖显然默认都会诱导Incw1-L RNA。然而,只有可代谢糖,蔗糖和D-葡萄糖,与Incw1-S RNA的稳态丰度增加、INCW1蛋白水平和酶活性的相应增加以及蔗糖合酶基因Sh1的下游代谢抑制有关。相反,不可代谢糖,包括两种葡萄糖类似物3-O-甲基葡萄糖和2-脱氧葡萄糖,诱导Incw1-L RNA的稳态水平更高,但这种增加并未导致INCW1蛋白/酶活性水平增加或Sh1基因受到抑制。我们得出结论,糖感知和Incw1基因的诱导独立于己糖激酶途径。更重要的是,我们的结果还表明,Incw1基因的3'非翻译区充当碳饥饿的调节传感器,可能构成植物中库代谢与细胞翻译之间的联系。