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1.
Properties of plasma membrane H<Superscript>+</Superscript>-ATPase in salt-treated <Emphasis Type="Italic">Populus euphratica</Emphasis> callus 总被引:4,自引:0,他引:4
The plasma membrane (PM) vesicles from Populus euphratica (P. euphratica) callus were isolated to investigate the properties of the PM H+-ATPase. An enrichment of sealed and oriented right-side-out PM vesicles was demonstrated by measurement of the purity and
orientation of membrane vesicles in the upper phase fraction. Analysis of pH optimum, temperature effects and kinetic properties
showed that the properties of the PM H+-ATPase from woody plant P. euphratica callus were consistent with those from herbaceous species. Application of various thiol reagents to the reaction revealed
that reduced thiol groups were essential to maintain the PM H+-ATPase activity. In addition, there was increased H+-ATPase activity in the PM vesicles when callus was exposed to NaCl. Western blotting analysis demonstrated an enhancement
of H+-ATPase content in NaCl-treated P. euphratica callus compared with the control. 相似文献
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3.
Yasuto Todokoro Masatoshi Kobayashi Takeshi Sato Toru Kawakami Ikuko Yumen Saburo Aimoto Toshimichi Fujiwara Hideo Akutsu 《Journal of biomolecular NMR》2010,48(1):1-11
The subunit c-ring of H+-ATP synthase (Fo
c-ring) plays an essential role in the proton translocation across a membrane driven by the electrochemical potential. To understand
its structure and function, we have carried out solid-state NMR analysis under magic-angle sample spinning. The uniformly
[13C, 15N]-labeled Fo
c from E. coli (EFo
c) was reconstituted into lipid membranes as oligomers. Its high resolution two- and three-dimensional spectra were obtained,
and the 13C and 15N signals were assigned. The obtained chemical shifts suggested that EFo
c takes on a hairpin-type helix-loop-helix structure in membranes as in an organic solution. The results on the magnetization
transfer between the EFo
c and deuterated lipids indicated that Ile55, Ala62, Gly69 and F76 were lined up on the outer surface of the oligomer. This
is in good agreement with the cross-linking results previously reported by Fillingame and his colleagues. This agreement reveals
that the reconstituted EFo
c oligomer takes on a ring structure similar to the intact one in vivo. On the other hand, analysis of the 13C nuclei distance of [3-13C]Ala24 and [4-13C]Asp61 in the Fo
c-ring did not agree with the model structures proposed for the EFo
c-decamer and dodecamer. Interestingly, the carboxyl group of the essential Asp61 in the membrane-embedded EFo
c-ring turned out to be protonated as COOH even at neutral pH. The hydrophobic surface of the EFo
c-ring carries relatively short side chains in its central region, which may allow soft and smooth interactions with the hydrocarbon
chains of lipids in the liquid-crystalline state. 相似文献
4.
Hui Li Wei Liu Qing-Song Yang Jing Lin You-Hong Chang 《Plant Molecular Biology Reporter》2018,36(3):439-450
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Su-Lian Lv Li-Jun Lian Pei-Lin Tao Zhao-Xia Li Ke-Wei Zhang Ju-Ren Zhang 《Planta》2009,229(4):899-910
An H+-PPase gene, TsVP from Thellungiella halophila, was transferred into two cotton (Gossypium hirsutum) varieties (Lumianyan19 and Lumianyan 21) and southern and northern blotting analysis showed the foreign gene was integrated
into the cotton genome and expressed. The measurement of isolated vacuolar membrane vesicles demonstrated that the transgenic
plants had higher V–H+-PPase activity compared with wild-type plants (WT). Overexpressing TsVP in cotton improved shoot and root growth, and transgenic plants were much more resistant to osmotic/drought stress than the
WT. Under drought stress conditions, transgenic plants had higher chlorophyll content, improved photosynthesis, higher relative
water content of leaves and less cell membrane damage than WT. We ascribe these properties to improved root development and
the lower solute potential resulting from higher solute content such as soluble sugars and free amino acids in the transgenic
plants. In this study, the average seed cotton yields of transgenic plants from Lumianyan 19 and Lumianyan 21 were significantly
increased compared with those of WT after exposing to drought stress for 21 days at flowering stage. The average seed cotton
yields were 51 and 40% higher than in their WT counterparts, respectively. This study benefits efforts to improve cotton yields
in arid and semiarid regions. 相似文献
7.
Sodium proton antiporters are ubiquitous membrane proteins that catalyze the exchange of Na+ for protons throughout the biological world. The Escherichia coli NhaA is the archetypal Na+/H+ antiporter and is absolutely essential for survival in high salt concentrations under alkaline conditions. Its crystal structure,
accompanied by extensive molecular dynamics simulations, have provided an atomically detailed model of its mechanism. In this
study, we utilized a combination of computational methodologies in order to construct a structural model for the Na+/H+ antiporter from the gram-negative bacterium Vibrio parahaemolyticus. We explored its overall architecture by computational means and validated its stability and robustness. This protein belongs
to a novel group of NhaA proteins that transports not only Na+ and Li+ as substrate ions, but K+ as well, and was also found to miss a β-hairpin segment prevalent in other homologs of the Bacteria domain. We propose, for the first time, a structure of a prototype model of a β-hairpin-less NhaA that is selective to K+. Better understanding of the Vibrio parahaemolyticus NhaA structure-function may assist in studies on ion transport, pH regulation and designing selective blockers. 相似文献
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Perturbing CAX1, an Arabidopsis vacuolar H+/Ca2+ antiporter, and the related vacuolar transporter CAX3, has been previously shown to cause severe growth defects; however,
the specific function of CAX3 has remained elusive. Here, we describe plant phenotypes that are shared among cax1 and cax3 including an increased sensitivity to both abscisic acid (ABA) and sugar during germination, and an increased tolerance to
ethylene during early seedling development. We have also identified phenotypes unique to cax3, namely salt, lithium and low pH sensitivity. We used biochemical measurements to ascribe these cax3 sensitivities to a reduction in vacuolar H+/Ca2+ transport during salt stress and decreased plasma membrane H+-ATPase activity. These findings catalog an array of CAX phenotypes and assign a specific role for CAX3 in response to salt
tolerance. 相似文献
10.
Yarrowia lipolytica plasma-membrane Na+/H+ antiporter, encoded by the YlNHA2 gene, is a very efficient exporter of surplus sodium from the cytosol. Its heterologous expression in Saccharomyces cerevisiae wild-type laboratory strains increased their sodium tolerance more efficiently than the expression of ZrSod2-22 antiporter from the osmotolerant yeast Zygosaccharomvces rouxii. 相似文献
11.
According to sequences of several vacuolar Na+/H+ antiporter genes from Xinjiang halophytic plants, a new vacuolar Na+/H+ antiporter gene (HcNHX1) from the halophyte Halostachys caspica was obtained by RACE and RT-PCR using primers corresponding to conserved regions of the coding sequences. The obtained HcNHX1 cDNA was 1,983 bp and contained a 1,656 bp open reading frame encoding a deduced protein of 551 amino acid residues. The
deduced amino acid sequence showed high identity with other NHX1 we have cloned previously from halophyte in Xinjiang desert
area. The phylogenetic analysis showed that HcNHX1 formed a clade with NHX homologs of Chenopodiaceae. Expression profiles
under salt treatment and ABA induction were investigated, and the results revealed that expression of HcNHX1 was induced by NaCl and ABA. To compare the degree of salt tolerance, we over-expressed HcNHX1 in Arabidopsis. Two transgenic lines grew more vigorously than the wild type (WT) under salt stress. The analysis of ion
contents indicated that under salt stress, the transgenic plants compartmentalized more Na+ in the leaves compared with wild-type plants. Together, these results suggest that the products of the novel gene HcNHX1 from halophyte Halostachys caspica is a functional tonoplast Na+/H+ antiporter. 相似文献
12.
Chunxia Wu Xiuhua Gao Xiangqiang Kong Yanxiu Zhao Hui Zhang 《Plant Molecular Biology Reporter》2009,27(1):1-12
Na+/H+ exchanger catalyzes the countertransport of Na+ and H+ across membranes. Using the rapid amplification of cDNA ends method, a Na+/H+ antiporter gene (ThNHX1) was isolated from a halophytic plant, salt cress (Thellungiella halophila). The deduced amino acid sequence contained 545 amino acid residues with a conserved amiloride-binding domain (87LFFIYLLPPI96) and shared more than 94% identity with that of AtNHX1 from Arabidopsis thaliana. The ThNHX1 mRNA level was upregulated by salt and other stresses (abscisic acid, polyethylene glycol, and high temperature). This gene
partially complemented the Na+/Li+-sensitive phenotype of a yeast mutant that was deficient in the endosomal–vacuolar Na+/H+ antiporter ScNHX1. Overexpression of ThNHX1 in Arabidopsis increased salt tolerance of transgenic plants compared with the wild-type plants. In addition, the silencing of ThNHX1 gene in T. halophila caused the transgenic plants to be more salt and osmotic sensitive than wild-type plant. Together, these results suggest
that ThNHX1 may function as a tonoplast Na+/H+ antiporter and play an important role in salt tolerance of T. halophila.
Chunxia Wu, Xiuhua Gao, and Xiangqiang Kong contributed equally to this work. 相似文献
13.
Thais Russo-Abrahão Carolina Macedo Koeller Michael E. Steinmann Stephanie Silva-Rito Thaissa Marins-Lucena Michele Alves-Bezerra Naira Ligia Lima-Giarola Iron Francisco de-Paula Amaia Gonzalez-Salgado Erwin Sigel Peter Bütikofer Katia Calp Gondim Norton Heise José Roberto Meyer-Fernandes 《Journal of bioenergetics and biomembranes》2017,49(2):183-194
14.
Aporn Bualuang Kanteera Soontharapirakkul Aran Incharoensakdi 《Journal of applied phycology》2010,22(2):123-129
The activity of Na+/H+ exchanger to remove toxic Na+ is important for growth of organisms under high salinity. In this study, the halotolerant cyanobacterium Aphanothece halophytica was shown to possess Na+/H+ exchange activity since exogenously added Na+ could dissipate a pre-formed pH gradient, and decrease extracellular pH. Kinetic analysis yielded apparent K
m (Na+) and V
max of 20.7 ± 3.1 mM and 3,333 ± 370 nmol H+ min−1 mg−1, respectively. For cells grown under salt-stress condition, the apparent K
m (Na+) and V
max was 18.3 ± 3.5 mM and 3,703 ± 350 nmol H+ min−1 mg−1, respectively. Three cations with decreasing efficiency namely Li+, Ca2+, and K+ were also able to dissipate pH gradient. Only marginal exchange activity was observed for Mg2+. The exchange activity was strongly inhibited by Na+-gradient dissipators, monensin, and sodium ionophore as well as by CCCP, a protonophore. A. halophytica showed high Na+/H+ exchange activity at neutral and alkaline pH up to pH 10. Cells grown at pH 7.6 under high salinity exhibited higher Na+/H+ exchange activity than those grown under low salinity during 15 days of growth suggesting a role of Na+/H+ exchanger for salt tolerance in A. halophytica. Cells grown at alkaline pH of 9.0 also exhibited a progressive increase of Na+/H+ exchange activity during 15 days of growth. 相似文献
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Erja Taulavuori Krzysztof Rakowski Kari Laine Kari Taulavuori 《Trees - Structure and Function》2007,21(6):613-617
Seasonal changes in vanadate sensitive plasma membrane H+-ATPase activity of bilberry (Vaccinium myrtillus L.) and Scots pine (Pinus sylvestris L.) were studied in a period from February to August in northern Finland. The plasma membrane isolation was performed by
sucrose gradient centrifugation, and the H+-ATPase activity was assayed by spectrophotometrical determination of released inorganic phosphate. The studied species showed
seasonal changes from high winter to low spring activity, indicating probable physiological changes between hardened and dehardened
tissue. ATPase activity of bilberry peaked up at the beginning of the growth period, obviously due to active phloem loading
of photosynthates. 相似文献
17.
New combinations are proposed in anticipation of the Polygonaceae treatment in the forthcoming volume of Intermountain Flora:
Polygonum kelloggii var. esotericum, P. kelloggii var. watsonii
,
Rumex densiflorus var. pycnanthus
,
R. salicifolius var. utahensis, and R. occidentalis var. tomentellus. Typifications are proposed to facilitate ongoing studies in Polygonaceae and to maintain current usage. 相似文献
18.
Background
The virulence of Candida species depends on many environmental conditions. Extracellular pH and concentration of alkali metal cations belong among important factors. Nevertheless, the contribution of transporters mediating the exchange of alkali metal cations for protons across the plasma membrane to the cell salt tolerance and other physiological properties of various Candida species has not been studied so far. 相似文献19.
Yonghong Li Yanzi Zhang Fengjuan Feng Dong Liang Lailiang Cheng Fengwang Ma Shouguo Shi 《Plant Cell, Tissue and Organ Culture》2010,102(3):337-345
Soil salinity is a major factor limiting apple production in some areas. Tonoplast Na+/H+ antiporters play a critical role in salt tolerance. Here, we isolated MdNHX1, a vacuolar Na+/H+ antiporter from Luo-2, a salt-tolerant rootstock of apple (Malus × domestica Borkh.), and introduced it into apple rootstock M.26 by Agrobacterium-mediated transformation. PCR and DNA gel blot analyses confirmed successful integration of MdNHX1. RT-PCR analysis indicated that the gene was highly expressed in transgenic plants, but the degree of this expression varied
among lines. Its overexpression conferred high tolerance to salt stress. Analysis of ion contents showed that, when exposed
to salinity stress, the transgenics compartmentalized more Na+ in the roots and also maintained a relatively high K+/Na+ ratio in the leaves compared with non-transformed plants. Under normal conditions, however, amounts of potassium and sodium
did not differ significantly between transgenic and control plants. 相似文献
20.
We have investigated the floral ontogeny of Arillastrum, Allosyncarpia, Stockwellia and Eucalyptopsis (of the eucalypt group, Myrtaceae) using scanning electron microscopy and light microscopy. Several critical characters for establishing relationships between these genera and to the eucalypts have been determined. The absence of compound petaline primordia in Arillastrum, Allosyncarpia, Stockwellia and Eucalyptopsis excludes these taxa from the eucalypt clade. Post-anthesis circumscissile abscission of the hypanthium above the ovary in Stockwellia, Eucalyptopsis and Allosyncarpia is evidence that these three taxa form a monophyletic group; undifferentiated perianth parts and elongated fusiform buds are characters that unite Stockwellia and Eucalyptopsis as sister taxa. No floral characters clearly associate Arillastrum with either the eucalypt clade or the clade of Stockwellia, Eucalyptopsis and Allosyncarpia.We gratefully acknowledge Clyde Dunlop and Bob Harwood (Northern Territory Herbarium) for collecting specimens of Allosyncarpia, and Bruce Gray (Atherton) for collecting specimens of Stockwellia. The Australian National Herbarium (CANB) kindly lent herbarium specimens of Eucalyptopsis for examination. This research was supported by a University of Melbourne Research Development Grant to Andrew Drinnan. 相似文献