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本文引用的文献

1
Pea Xyloglucan and Cellulose: VI. Xyloglucan-Cellulose Interactions in Vitro and in Vivo.豌豆木葡聚糖和纤维素:六、体外和体内的木葡聚糖-纤维素相互作用。
Plant Physiol. 1987 Feb;83(2):384-9. doi: 10.1104/pp.83.2.384.
2
The Structure of Plant Cell Walls: II. The Hemicellulose of the Walls of Suspension-cultured Sycamore Cells.植物细胞壁的结构:II. 悬浮培养的悬铃木细胞细胞壁中的半纤维素
Plant Physiol. 1973 Jan;51(1):174-87. doi: 10.1104/pp.51.1.174.
3
Effect of cellulose synthesis inhibition on growth and the integration of xyloglucan into pea internode cell walls.纤维素合成抑制对豌豆节间生长及木葡聚糖整合到细胞壁的影响。
Plant Physiol. 1992 Oct;100(2):993-7. doi: 10.1104/pp.100.2.993.
4
Xyloglucan Endotransglycosylase Activity in Carrot Cell Suspensions during cell Elongation and Somatic Embryogenesis.胡萝卜细胞悬浮液在细胞伸长和体细胞胚胎发生过程中的木葡聚糖内转糖基酶活性
Plant Physiol. 1993 Nov;103(3):987-992. doi: 10.1104/pp.103.3.987.
5
Disruption of hydrogen bonding between plant cell wall polymers by proteins that induce wall extension.诱导细胞壁伸展的蛋白质对植物细胞壁聚合物之间氢键的破坏。
Proc Natl Acad Sci U S A. 1994 Jul 5;91(14):6574-8. doi: 10.1073/pnas.91.14.6574.
6
Two endogenous proteins that induce cell wall extension in plants.两种诱导植物细胞壁伸展的内源性蛋白质。
Plant Cell. 1992 Nov;4(11):1425-33. doi: 10.1105/tpc.4.11.1425.
7
Xyloglucan endotransglycosylation in suspension-cultured poplar cells.悬浮培养的杨树细胞中的木葡聚糖内转糖基化作用
Biosci Biotechnol Biochem. 1996 Dec;60(12):1950-5. doi: 10.1271/bbb.60.1950.
8
Cold-shock regulation of the Arabidopsis TCH genes and the effects of modulating intracellular calcium levels.拟南芥TCH基因的冷休克调控及细胞内钙水平调节的影响。
Plant Physiol. 1996 Aug;111(4):1271-9. doi: 10.1104/pp.111.4.1271.
9
The Arabidopsis XET-related gene family: environmental and hormonal regulation of expression.拟南芥木葡聚糖内转糖基酶相关基因家族:表达的环境与激素调控
Plant J. 1996 Jun;9(6):879-89. doi: 10.1046/j.1365-313x.1996.9060879.x.
10
Structural models of primary cell walls in flowering plants: consistency of molecular structure with the physical properties of the walls during growth.开花植物初生细胞壁的结构模型:分子结构与生长过程中细胞壁物理特性的一致性
Plant J. 1993 Jan;3(1):1-30. doi: 10.1111/j.1365-313x.1993.tb00007.x.

拟南芥TCH4木葡聚糖内转糖基酶。底物特异性、最适pH值及耐寒性。

The Arabidopsis TCH4 xyloglucan endotransglycosylase. Substrate specificity, pH optimum, and cold tolerance.

作者信息

Purugganan M M, Braam J, Fry S C

机构信息

Department of Biochemistry and Cell Biology, Rice University, Houston, Texas 77005-1892, USA.

出版信息

Plant Physiol. 1997 Sep;115(1):181-90. doi: 10.1104/pp.115.1.181.

DOI:10.1104/pp.115.1.181
PMID:9306698
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC158473/
Abstract

Xyloglucan endotransglycosylases (XETs) modify a major component of the plant cell wall and therefore may play critical roles in generating tissue properties and influencing morphogenesis. An XET-related gene family exists in Arabidopsis thaliana, the members of which show differential regulation of expression. TCH4 expression is rapidly regulated by mechanical stimuli, temperature shifts, light, and hormones. As a first step in determining whether Arabidopsis XET-related proteins have distinct properties, we produced recombinant TCH4 protein in bacteria and determined its enzymatic characteristics. TCH4 specifically transglycosylates only xyloglucan. The enzyme prefers to transfer a portion of a donor polymer onto another xyloglucan polymer (acceptor); TCH4 will also utilize xyloglucan-derived oligosaccharides as acceptors but discriminates between differentially fucosylated oligosaccharides. TCH4 is most active at pH 6.0 to 6.5 and is surprisingly cold-tolerant with an optimum of 12 to 18 degrees C. TCH4 activity is enhanced by urea and bovine serum albumin, but nor cations, reducing agents, or carboxymethylcellulose. These studies indicate that TCH4 is specific for xyloglucan, but that the molecular mass and the fucosyl content of the substrates influence enzymatic reaction rates. TCH4 is unlikely to play a role in acid-induced wall loosening but may function in cold acclimation or cold-tolerant growth.

摘要

木葡聚糖内转糖基酶(XETs)可修饰植物细胞壁的一种主要成分,因此可能在塑造组织特性和影响形态发生过程中发挥关键作用。拟南芥中存在一个与XET相关的基因家族,其成员表现出不同的表达调控。TCH4的表达受机械刺激、温度变化、光照和激素的快速调控。作为确定拟南芥XET相关蛋白是否具有独特特性的第一步,我们在细菌中生产了重组TCH4蛋白并测定了其酶学特性。TCH4仅对木葡聚糖进行特异性转糖基化。该酶更倾向于将供体聚合物的一部分转移到另一种木葡聚糖聚合物(受体)上;TCH4也会利用木葡聚糖衍生的寡糖作为受体,但会区分不同岩藻糖基化的寡糖。TCH4在pH 6.0至6.5时活性最高,令人惊讶的是它具有耐寒性,最适温度为12至18摄氏度。尿素和牛血清白蛋白可增强TCH4的活性,但阳离子、还原剂或羧甲基纤维素则不能。这些研究表明,TCH4对木葡聚糖具有特异性,但底物的分子量和岩藻糖基含量会影响酶促反应速率。TCH4不太可能在酸诱导的细胞壁松弛中发挥作用,但可能在冷驯化或耐寒生长中起作用。