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1.
PLoS One ; 18(8): e0273604, 2023.
Artigo em Inglês | MEDLINE | ID: mdl-37556447

RESUMO

Lactic acid bacteria (LAB) exert health-beneficial effects by regulating innate immunity in the intestinal tract. Due to growing health awareness, the demand for LAB and studies have focused on identifying beneficial LAB strains is increasing, especially those that stimulate innate immunity. In this study, the LAB strain D279 (NITE_BP-03645, Latilactobacillus sakei) was isolated from among 741 LAB strains that were analyzed for their ability to induce interleukin 12 (IL-12) production and was subsequently characterized. D279 induced the highest expression of IL-12 among the screened LABs. Furthermore, D279 significantly activated antiviral genes and preferentially induced interferon (IFN)λ expression in vitro, which plays a critical role in the epithelial tissue, thereby conferring strong anti-influenza potency without inflammation. However, it decreased the IFNα levels. The administration of pasteurized D279 to mice resulted in strong anti-influenza potency, with higher natural killer (NK) cell activity and a lower viral load in the lung than in the control. Importantly, none of the D279-administered mice were sacrificed during the viral infection tests. These results suggest that D279 administration confers beneficial effects by regulating innate immunity and that it may be relevant for commercial use in the future.


Assuntos
Influenza Humana , Lactobacillales , Orthomyxoviridae , Animais , Camundongos , Humanos , Células Matadoras Naturais , Interleucina-12/metabolismo , Imunidade Inata
2.
Plants (Basel) ; 12(14)2023 Jul 16.
Artigo em Inglês | MEDLINE | ID: mdl-37514277

RESUMO

Supplementation with rare earth elements (REEs) such as lanthanum and cerium has been shown to promote plant elongation and/or increase crop yields. On the other hand, there are reports that REE supplementation of plants has no such effect. The appropriate modes for REE utilization and the underlying mechanism are not fully understood. In this study, we investigated how REE supplementation of plants under low light stress affects plant growth and gene expression. Under low light stress conditions, tomato root elongation was observed to be reduced by about half. This suppression of root elongation was found to be considerably alleviated by 20 mM lanthanum ion supplementation. This effect was plant-species-dependent and nutrient-condition-dependent. Under low light stress, the expression of the genes for phytochrome-interacting factor, which induces auxin synthesis, and several auxin-synthesis-related proteins were markedly upregulated by lanthanum ion supplementation. Thus, we speculate that REE supplementation of plants results in auxin-induced cell elongation and alleviates growth suppression under stress conditions.

3.
Plant Physiol ; 193(3): 1758-1771, 2023 Oct 26.
Artigo em Inglês | MEDLINE | ID: mdl-37433052

RESUMO

Apiose is a unique branched-chain pentose found in plant glycosides and a key component of the cell wall polysaccharide pectin and other specialized metabolites. More than 1,200 plant-specialized metabolites contain apiose residues, represented by apiin, a distinctive flavone glycoside found in celery (Apium graveolens) and parsley (Petroselinum crispum) in the family Apiaceae. The physiological functions of apiin remain obscure, partly due to our lack of knowledge on apiosyltransferase during apiin biosynthesis. Here, we identified UGT94AX1 as an A. graveolens apiosyltransferase (AgApiT) responsible for catalyzing the last sugar modification step in apiin biosynthesis. AgApiT showed strict substrate specificity for the sugar donor, UDP-apiose, and moderate specificity for acceptor substrates, thereby producing various apiose-containing flavone glycosides in celery. Homology modeling of AgApiT with UDP-apiose, followed by site-directed mutagenesis experiments, identified unique Ile139, Phe140, and Leu356 residues in AgApiT, which are seemingly crucial for the recognition of UDP-apiose in the sugar donor pocket. Sequence comparison and molecular phylogenetic analysis of celery glycosyltransferases suggested that AgApiT is the sole apiosyltransferase-encoding gene in the celery genome. Identification of this plant apiosyltransferase gene will enhance our understanding of the physioecological functions of apiose and apiose-containing compounds.


Assuntos
Apium , Flavonas , Apium/genética , Glicosídeos , Filogenia
4.
Theor Appl Genet ; 136(4): 94, 2023 Apr 03.
Artigo em Inglês | MEDLINE | ID: mdl-37010621

RESUMO

KEY MESSAGE: Barley double mutants in two genes involved in starch granule morphology, HvFLO6 and HvISA1, had impaired starch accumulation and higher grain sugar levels than either single mutant. Starch is a biologically and commercially important glucose polymer synthesized by plants as semicrystalline starch granules (SGs). Because SG morphology affects starch properties, mutants with altered SG morphology may be useful in breeding crops with desirable starch properties, including potentially novel properties. In this study, we employed a simple screen for mutants with altered SG morphology in barley (Hordeum vulgare). We isolated mutants that formed compound SGs together with the normal simple SGs in the endosperm and found that they were allelic mutants of the starch biosynthesis genes ISOAMYLASE1 (HvISA1) and FLOURY ENDOSPERM 6 (HvFLO6), encoding starch debranching enzyme and CARBOHYDRATE-BINDING MODULE 48-containing protein, respectively. We generated the hvflo6 hvisa1 double mutant and showed that it had significantly reduced starch biosynthesis and developed shrunken grains. In contrast to starch, soluble α-glucan, phytoglycogen, and sugars accumulated to higher levels in the double mutant than in the single mutants. In addition, the double mutants showed defects in SG morphology in the endosperm and in the pollen. This novel genetic interaction suggests that hvflo6 acts as an enhancer of the sugary phenotype caused by hvisa1 mutation.


Assuntos
Hordeum , Oryza , Endosperma/genética , Endosperma/metabolismo , Hordeum/genética , Açúcares , Melhoramento Vegetal , Amido/metabolismo , Glucanos/metabolismo , Fenótipo , Mutação , Oryza/genética , Proteínas de Plantas/genética , Proteínas de Plantas/metabolismo
5.
Neurocase ; 26(6): 328-339, 2020 12.
Artigo em Inglês | MEDLINE | ID: mdl-33103577

RESUMO

We report a patient with asymmetric Bálint's syndrome (predominantly right-sided oculomotor apraxia and simultanagnosia and optic ataxia for the right hemispace), and multimodal agnosia (apperceptive visual agnosia and bilateral associative tactile agnosia) with accompanying right hemianopia, bilateral agraphesthesia, hemispatial neglect, global alexia with unavailable kinesthetic reading, and lexical agraphia for kanji (Japanese morphograms), after hemorrhage in the left parieto-occipito-temporal area. The coexistence of tactile agnosia, bilateral agraphesthesia, and ineffective kinesthetic reading suggests that tactile-kinesthetic information can be interrupted because of damage to the fiber connection from the parietal lobe to the occipito-temporal area, leading to these tactually related cognitive impairments.


Assuntos
Apraxias/congênito , Ataxia , Hemorragia Cerebral , Síndrome de Cogan , Transtornos da Linguagem , Transtornos da Percepção , Idoso , Agnosia/etiologia , Agnosia/patologia , Agnosia/fisiopatologia , Agrafia/etiologia , Agrafia/patologia , Agrafia/fisiopatologia , Apraxias/etiologia , Apraxias/patologia , Apraxias/fisiopatologia , Ataxia/etiologia , Ataxia/patologia , Ataxia/fisiopatologia , Hemorragia Cerebral/complicações , Hemorragia Cerebral/patologia , Hemorragia Cerebral/fisiopatologia , Síndrome de Cogan/etiologia , Síndrome de Cogan/patologia , Síndrome de Cogan/fisiopatologia , Dislexia/etiologia , Dislexia/patologia , Dislexia/fisiopatologia , Humanos , Transtornos da Linguagem/etiologia , Transtornos da Linguagem/patologia , Transtornos da Linguagem/fisiopatologia , Imageamento por Ressonância Magnética , Masculino , Lobo Occipital/patologia , Lobo Parietal/patologia , Transtornos da Percepção/etiologia , Transtornos da Percepção/patologia , Transtornos da Percepção/fisiopatologia , Síndrome , Lobo Temporal/patologia , Percepção do Tato/fisiologia , Percepção Visual/fisiologia
6.
Front Plant Sci ; 11: 997, 2020.
Artigo em Inglês | MEDLINE | ID: mdl-32714362

RESUMO

Rhamnogalacturonan I (RG-I) comprises approximately one quarter of the pectin molecules in land plants, and the backbone of RG-I consists of a repeating sequence of [2)-α-L-Rha(1-4)-α-D-GalUA(1-] disaccharide. Four Arabidopsis thaliana genes encoding RG-I rhamnosyltransferases (AtRRT1 to AtRRT4), which synthesize the disaccharide repeats, have been identified in the glycosyltransferase family (GT106). However, the functional role of RG-I in plant cell walls and the evolutional history of RRTs remains to be clarified. Here, we characterized the sole ortholog of AtRRT1-AtRRT4 in liverwort, Marchantia polymorpha, namely, MpRRT1. MpRRT1 had RRT activity and genetically complemented the AtRRT1-deficient mutant phenotype in A. thaliana. However, the MpRRT1-deficient M. polymorpha mutants showed no prominent morphological changes and only an approximate 20% reduction in rhamnose content in the cell wall fraction compared to that in wild-type plants, suggesting the existence of other RRT gene(s) in the M. polymorpha genome. As expected, we detected RRT activities in other GT106 family proteins such as those encoded by MpRRT3 in M. polymorpha and FRB1/AtRRT8 in A. thaliana, the deficient mutant of which affects cell adhesion. Our results show that RRT genes are more redundant and diverse in GT106 than previously thought.

7.
Plants (Basel) ; 9(1)2019 Dec 25.
Artigo em Inglês | MEDLINE | ID: mdl-31881731

RESUMO

Xylem vessels are important for water conduction in vascular plants. The VASCULAR-RELATED NAC-DOMAIN (VND) family proteins, master regulators of xylem vessel cell differentiation in Arabidopsis thaliana, can upregulate a set of genes required for xylem vessel cell differentiation, including those involved in secondary cell wall (SCW) formation and programmed cell death (PCD); however, it is not fully understood how VND activity levels influence these processes. Here, we examined the Arabidopsis VND7-VP16-GR line, in which VND7 activity is post-translationally activated by treatments with different concentrations of dexamethasone (DEX), a synthetic glucocorticoid. Our observations showed that 1 nM DEX induced weak SCW deposition, but not PCD, whereas 10 or 100 nM DEX induced both SCW deposition and PCD. The decreased chlorophyll contents and SCW deposition were apparent after 24 h of 100 nM DEX treatment, but became evident only after 48 h of 10 nM DEX treatment. Moreover, the lower DEX concentrations delayed the upregulation of VND7 downstream genes, and decreased their induction levels. They collectively suggest that the regulation of VND activity is important not only to initiate xylem vessel cell differentiation, but also regulate the quality of the xylem vessels through VND-activity-dependent upregulation of the PCD- and SCW-related genes.

8.
Plant Physiol Biochem ; 142: 173-178, 2019 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-31299599

RESUMO

Rhamnogalacturonan I (RG-I), one of the pectic components of the plant cell wall, is composed of a backbone of repeating disaccharide units of rhamnose and galacturonic acid, and side chains, such as galactans, arabinans, and arabinogalactans. The activity of RG-I galactosyltransferase, which transfers galactosyl residues to rhamnosyl residues in the RG-I backbone, has not been detected until now. Here, we detected galactosyltransferase activity in azuki bean epicotyls using fluorogenic RG-I oligosaccharide acceptors. This enzyme prefers oligosaccharides with a degree of polymerization more than 9. The enzyme activity was detected in the Golgi apparatus, which is the site of pectin synthesis. In vitro hyperactivation of this enzyme was also observed. Moreover, enzyme activity was increased up to 40-fold in the presence of cationic surfactants or polyelectrolytes.


Assuntos
Galactosiltransferases/análise , Galactosiltransferases/metabolismo , Pectinas/metabolismo , Vigna/enzimologia , Ativação Enzimática , Concentração de Íons de Hidrogênio , Oligossacarídeos/metabolismo , Proteínas de Plantas/análise , Proteínas de Plantas/metabolismo , Especificidade por Substrato , Vigna/metabolismo
9.
Clin Exp Nephrol ; 23(9): 1141-1146, 2019 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-31183589

RESUMO

BACKGROUND: Transcatheter arterial chemoembolization (TACE) is widely used for unresectable hepatocellular carcinoma (HCC). The purpose of this study was to investigate incidence and risk factors of contrast-induced nephropathy (CIN) after TACE in patients with HCC. METHODS: In this single-center retrospective study, we examined 461 consecutive TACE sessions in 260 patients between January 2003 and October 2015. CIN was defined as an increase in serum creatinine levels by ≥ 0.5 mg/dl or ≥ 25% from baseline within 72 h after TACE. We calculated incidence rate of CIN and tried to identify its risk factors by logistic regression analysis. RESULTS: Twenty-one cases of CIN (5%) were observed in 461 TACE sessions. One patient required subsequent hemodialysis transiently. In univariate analysis, tumor size > 5 cm [odds ratio (OR) 5.76, 95% confidence interval (CI) 2.34-14.14, p < 0.001], chronic kidney disease (OR 2.54, 95% CI 1.05-6.14, p = 0.04), serum hemoglobin level [OR 0.79 (per 1 g/dl increase), 95% CI 0.64-0.98, p = 0.03] and serum albumin level [OR 0.44 (per 1 g/dl increase), 95% CI 0.19-1.02, p = 0.05] were associated with the development of CIN. Stepwise logistic regression methods showed that tumor size > 5 cm (OR 7.81, 95% CI 2.99-20.46, p < 0.001) and serum albumin [OR 0.29 (per 1 g/dl increase), 95% CI 0.11-0.75, p = 0.01] were risk factors of CIN. CONCLUSIONS: In this study, HCC tumor size and lower serum albumin level were independent predictors of CIN after TACE.


Assuntos
Carcinoma Hepatocelular/terapia , Quimioembolização Terapêutica/efeitos adversos , Meios de Contraste/efeitos adversos , Nefropatias/induzido quimicamente , Neoplasias Hepáticas/terapia , Idoso , Idoso de 80 Anos ou mais , Carcinoma Hepatocelular/sangue , Carcinoma Hepatocelular/diagnóstico por imagem , Meios de Contraste/administração & dosagem , Feminino , Humanos , Incidência , Nefropatias/diagnóstico , Nefropatias/epidemiologia , Neoplasias Hepáticas/sangue , Neoplasias Hepáticas/diagnóstico por imagem , Masculino , Pessoa de Meia-Idade , Estudos Retrospectivos , Medição de Risco , Fatores de Risco , Albumina Sérica Humana/análise , Fatores de Tempo , Tóquio/epidemiologia , Resultado do Tratamento , Carga Tumoral
10.
Carbohydr Res ; 477: 20-25, 2019 May 15.
Artigo em Inglês | MEDLINE | ID: mdl-30933787

RESUMO

UDP-apiose, a donor substrate of apiosyltransferases, is labile because of its intramolecular self-cyclization ability, resulting in the formation of apiofuranosyl-1,2-cyclic phosphate. Therefore, stabilization of UDP-apiose is indispensable for its availability and identifying and characterizing the apiosyltransferases involved in the biosynthesis of apiosylated sugar chains and glycosides. Here, we established a method for stabilizing UDP-apiose using bulky cations as counter ions. Bulky cations such as triethylamine effectively suppressed the degradation of UDP-apiose in solution. The half-life of UDP-apiose was increased to 48.1 ±â€¯2.4 h at pH 6.0 and 25 °C using triethylamine as a counter cation. UDP-apiose coordinated with a counter cation enabled long-term storage under freezing conditions. UDP-apiose was utilized as a donor substrate for apigenin 7-O-ß-D-glucoside apiosyltransferase to produce the apiosylated glycoside apiin. This apiosyltransferase assay will be useful for identifying genes encoding apiosyltransferases.


Assuntos
Ensaios Enzimáticos/métodos , Pentosiltransferases/metabolismo , Açúcares de Uridina Difosfato/síntese química , Açúcares de Uridina Difosfato/metabolismo , Configuração de Carboidratos , Pentosiltransferases/genética , Açúcares de Uridina Difosfato/química
11.
Plant Cell ; 30(11): 2663-2676, 2018 11.
Artigo em Inglês | MEDLINE | ID: mdl-30337427

RESUMO

The secondary cell wall (SCW) of xylem vessel cells provides rigidity and strength that enables efficient water conduction throughout the plant. To gain insight into SCW deposition, we mutagenized Arabidopsis thaliana VASCULAR-RELATED NAC-DOMAIN7-inducible plant lines, in which ectopic protoxylem vessel cell differentiation is synchronously induced. The baculites mutant was isolated based on the absence of helical SCW patterns in ectopically-induced protoxylem vessel cells, and mature baculites plants exhibited an irregular xylem (irx) mutant phenotype in mature plants. A single nucleic acid substitution in the CELLULOSE SYNTHASE SUBUNIT 7 (CESA7) gene in baculites was identified: while the mutation was predicted to produce a C-terminal truncated protein, immunoblot analysis revealed that cesa7bac mutation results in loss of production of CESA7 proteins, indicating that baculites is a novel cesa7 loss-of-function mutant. In cesa7bac , despite a lack of patterned cellulose deposition, the helically-patterned deposition of other SCW components, such as the hemicellulose xylan and the phenolic polymer lignin, was not affected. Similar phenotypes were found in another point mutation mutant cesa7mur10-2 , and an established knock-out mutant, cesa7irx3-4 Taken together, we propose that the spatio-temporal deposition of different SCW components, such as xylan and lignin, is not dependent on cellulose patterning.


Assuntos
Proteínas de Arabidopsis/metabolismo , Arabidopsis/metabolismo , Celulose/metabolismo , Lignina/metabolismo , Xilanos/metabolismo , Arabidopsis/genética , Proteínas de Arabidopsis/genética , Regulação da Expressão Gênica de Plantas , Glucosiltransferases/genética , Glucosiltransferases/metabolismo , Mutação
12.
Nat Plants ; 4(9): 669-676, 2018 09.
Artigo em Inglês | MEDLINE | ID: mdl-30082766

RESUMO

Pectin is one of the three key cell wall polysaccharides in land plants and consists of three major structural domains: homogalacturonan, rhamnogalacturonan I (RG-I) and RG-II. Although the glycosyltransferase required for the synthesis of the homogalacturonan and RG-II backbone was identified a decade ago, those for the synthesis of the RG-I backbone, which consists of the repeating disaccharide unit [→2)-α-L-Rha-(1 → 4)-α-D-GalUA-(1→], have remained unknown. Here, we report the identification and characterization of Arabidopsis RG-I:rhamnosyltransferases (RRTs), which transfer the rhamnose residue from UDP-ß-L-rhamnose to RG-I oligosaccharides. RRT1, which is one of the four Arabidopsis RRTs, is a single-spanning transmembrane protein, localized to the Golgi apparatus. RRT1 was highly expressed during formation of the seed coat mucilage, which is a specialized cell wall with abundant RG-I. Loss-of-function mutation in RRT1 caused a reduction in the level of RG-I in the seed coat mucilage. The RRTs belong to a novel glycosyltransferase family, now designated GT106. This is a large plant-specific family, and glycosyltransferases in this family seem to have plant-specific roles, such as biosynthesis of plant cell wall polysaccharides.


Assuntos
Proteínas de Arabidopsis/metabolismo , Arabidopsis/enzimologia , Glicosiltransferases/metabolismo , Pectinas/metabolismo , Arabidopsis/metabolismo , Arabidopsis/fisiologia , Proteínas de Arabidopsis/fisiologia , Parede Celular/metabolismo , Glicosiltransferases/fisiologia , Ramnose/metabolismo , Transcriptoma
13.
J Exp Bot ; 68(1): 17-26, 2017 01.
Artigo em Inglês | MEDLINE | ID: mdl-28013230

RESUMO

One crucial problem that plants faced during their evolution, particularly during the transition to growth on land, was how to transport water, nutrients, metabolites, and small signaling molecules within a large, multicellular body. As a solution to this problem, land plants developed specific tissues for conducting molecules, called water-conducting cells (WCCs) and food-conducting cells (FCCs). The well-developed WCCs and FCCs in extant plants are the tracheary elements and sieve elements, respectively, which are found in vascular plants. Recent molecular genetic studies revealed that transcriptional networks regulate the differentiation of tracheary and sieve elements, and that the networks governing WCC differentiation are largely conserved among land plant species. In this review, we discuss the molecular evolution of plant conducting cells. By focusing on the evolution of the key transcription factors that regulate vascular cell differentiation, the NAC transcription factor VASCULAR-RELATED NAC-DOMAIN for WCCs and the MYB-coiled-coil (CC)-type transcription factor ALTERED PHLOEM DEVELOPMENT for sieve elements, we describe how land plants evolved molecular systems to produce the specialized cells that function as WCCs and FCCs.


Assuntos
Diferenciação Celular/fisiologia , Floema/citologia , Xilema/citologia , Evolução Biológica , Embriófitas/citologia , Embriófitas/crescimento & desenvolvimento , Embriófitas/fisiologia , Regulação da Expressão Gênica no Desenvolvimento/fisiologia , Regulação da Expressão Gênica de Plantas/fisiologia , Floema/crescimento & desenvolvimento , Floema/fisiologia , Xilema/crescimento & desenvolvimento , Xilema/fisiologia
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