Overexpression of a novel microRNA IamiR-4-3p from water spinach (Ipomoea aquatica Forsk.) increased Cd toxicity and accumulation in Arabidopsis thaliana

Author(s):  
Chuang Shen ◽  
Ying-Ying Huang ◽  
Jun-Liang Xin ◽  
Chun-Tao He ◽  
Zhongyi Yang

Abstract The function of IamiR-4-3p was investigated by using wild type (WT), transfected with empty vector pCambia1302 (CK) and IamiR-4-3p transgenic Arabidopsis in this study. The expression level of GST3 was reduced by 20% in the transgenic Arabidopsis (p35S::miR-4-3p Arabidopsis) when compared to WT, and both of its shoot and root were shorter than WT and CK. After 3 d Cd treatment, root Cd concentrations of p35S::miR-4-3p Arabidopsis was significantly higher than WT and CK, while no significant difference was found in shoot Cd concentrations. MDA and H2O2 concentrations were positively correlated with the Cd concentrations in Arabidopsis. Interestingly, even though there was no significant difference among the shoot Cd concentrations, shoot MDA and H2O2 of p35S::miR-4-3p Arabidopsis were higher than those of WT and CK, and shoot T-AOC exhibited a opposite trend. These results are clearly related to the lowered expression of GST3 by the overexpression of miR-4-3p in p35S::miR-4-3p Arabidopsis. It is suggested that the function of IamiR-4-3p is able to diminish the expression level of GST3, and is responsible to the growth dwarf, higher Cd uptake and oxidative damage but not the Cd translocation from root to shoot in Arabidopsis.

Blood ◽  
2004 ◽  
Vol 104 (11) ◽  
pp. 95-95 ◽  
Author(s):  
Steven Knapper ◽  
Alan K. Burnett ◽  
Amanda F. Gilkes ◽  
Kenneth I. Mills ◽  
Val Walsh

Abstract Activating mutations of the receptor tyrosine kinase FLT3 are present in approximately one-third of AML cases and are associated with an adverse prognosis. FLT3 is expressed in over 90% of cases of AML and many non-mutants show evidence of FLT3 activation, which may play a significant signalling role in leukaemogenesis, making FLT3 an attractive therapeutic target. CEP701 (Cephalon) and PKC412 (Novartis) are orally-bioavailable indolocarbazole derivatives that potently inhibit FLT3 phosphorylation. We studied the relationship between in vitro inhibition of FLT3 phosphorylation and induction of cytotoxicity in primary AML blasts from 12 patients. 7 of the cases were FLT3 mutants (6 ITDs and 1 D835 point mutant), the amount of mutant RNA varying between 7% and 84% of total FLT3 RNA expressed. The blasts were exposed for 1 hour to a range of concentrations of CEP701 and PKC412, lysed and immunoprecipitated with an anti-FLT3 antibody. After sequential immunoblotting with anti-phosphotyrosine and anti-FLT3 antibodies, inhibition of FLT3 phosphorylation was measured by densitometry. Both drugs inhibited FLT3 phosphorylation in all samples with lower concentrations required in FLT3 mutants. CEP701 inhibited FLT3 phosphorylation with median IC50s of 3.7nM and 11.9nM in mutant and wild type (WT) cases respectively (p=0.0006). IC50s for PKC412 were 7.7nM and 59.8nM in mutant and WT cases (p=0.0268). Induction of cytotoxicity was assessed by MTS assay following 72-hour exposure of blasts to a range of concentrations of CEP701 and PKC412. Cytotoxic responses to both drugs were greater in FLT3 mutants than WT cases at each dose studied and in terms of IC50 dose (median IC50s in mutant and WT cases: 95nM and 231nM with CEP701, 1.24 μM and 1.61μM with PKC412) although these differences did not reach statistical significance. Annexin V binding apoptosis assay produced similar dose response curves. Both agents showed greater inter-case variability in cytotoxic response than in sensitivity to inhibition of FLT3 phosphorylation. A lack of cytotoxic response to FLT3 inhibition with CEP701 was seen in the ITD mutant with the lowest ratio of mutant to WT FLT3 RNA (0.08) and several WT samples displayed resistance to in vitro induction of cytotoxicity despite almost complete inhibition of FLT3. Induction of cytotoxicity with PKC412 in both mutant and WT cases generally required doses well in excess of those required to fully inhibit FLT3 phosphorylation. Cases were further stratified by flow cytometric measurement of surface FLT3 expression, and by immunoblotting to measure STAT5 dephosphorylation in response to both drugs. No significant difference in overall FLT3 expression was seen between mutant and WT cases. Interestingly the highest FLT3 expression level was seen in a wild type case that was highly sensitive to CEP701. Inhibition of STAT5 phosphorylation appeared closely linked to FLT3 inhibition, although in some cases a good cytotoxic response was achieved despite failure to inhibit STAT5, suggesting involvment of other signalling pathways. In summary, although both CEP701 and PKC412 predictably and reliably inhibit FLT3 phosphorylation in primary AML blasts, their induction of cytotoxicity appears to be much more variable. A number of factors may influence this including variations in level of dependency on FLT3 signalling for blast survival, mutant to WT allele ratio and overall FLT3 expression level. Effects on targets other than FLT3 also need to be considered.


Blood ◽  
2009 ◽  
Vol 114 (22) ◽  
pp. 162-162 ◽  
Author(s):  
Belinda K Singleton ◽  
Victoria SS Fairweather ◽  
Winnie Lau ◽  
Stephen F Parsons ◽  
Nicholas M Burton ◽  
...  

Abstract Abstract 162 We describe a single-point mutation in the transcription factor EKLF associated with dyserythropoietic anemia. The female Danish patient was extensively studied in the early 1990's (Wickramasinghe et al. Br J Haem 1991,79:322; Tang et al. Blood 1993,81:1636; Parsons et al. Blood 1994,83:860; Agre et al. J Clin Invest 1994,94:1050). The patient was severely anemic at birth and required repeated transfusions during childhood. Notable features included persistent expression of epsilon and zeta embryonic globins, an HbF level of 40%, novel intra-erythroblastic and intra-erythrocytic inclusions and deficiency of erythroid proteins CD44 and Aquaporin 1. Evidence that EKLF plays a major role in globin gene regulation in particular and erythroid gene expression in general led us to examine EKLF in this patient, her unaffected sister, and her parents. The coding sequence of EKLF was normal wild-type in both healthy parents and sister, but the patient had a mutation on one allele of EKLF in the second zinc finger domain (Glu325Lys). This mutation is at a site that is central to the expected site of interaction of EKLF with DNA. However, modelling revealed that reversal of the charge at this position in a critical DNA-binding domain was likely to create a novel direct contact between Lys325 and a phosphate on the DNA backbone, hence maintaining rather than disrupting binding of EKLF to promoter regions. To test this, we created recombinant forms of the EKLF zinc finger domain, corresponding to the wild-type, Glu325Lys and 3 presumed loss-of-function mutations previously associated with the rare blood group In(Lu) phenotype (Singleton et al. Blood 2008,112:2081). Using fluorescence-based binding assays, mutant EKLF proteins Arg328Leu, Arg328His, and Arg331Gly showed virtually no binding to the beta globin (HBB) promoter sequence, as expected. In contrast, there was no significant difference in the binding of EKLF Glu325Lys and wild-type EKLF to the promoter sequence. We then transfected full-length wild-type and mutated EKLF into K562 cells and measured the effect on expression of several genes by quantitative real-time PCR. Transfectants with wild-type EKLF showed an average 13.7 fold increase in EKLF mRNA expression (SD 4.8, n=5) compared with a clone transfected with the empty vector. This was associated with an elevation in HBB and CD44H mRNA expression (average 12.8 (SD 10.9, n=5) and 27.0 (SD 21.7, n=5) fold respectively, compared with the empty vector clone). In contrast, transfectants with EKLF Glu325Lys, although expressing slightly lower levels of EKLF mRNA than the wild-type clones (average 8.0 fold compared with the empty vector clone, SD 5.2, n=11), showed much reduced HBB and CD44H expression (average 1.9 (SD 1.6, n=11) and 1.4 (SD 1.4, n=11) fold respectively, compared with the empty vector clone). Our findings indicate that EKLF Glu325Lys has a reduced ability to activate HBB and CD44H expression, thus establishing a link between the mutation and the patient's phenotype. This reduction, however, does not appear to be explained by differences in the ability of the mutant EKLF to bind to the HBB promoter, implying that other mechanisms of gene regulation must be affected in the patient. Disclosures: No relevant conflicts of interest to declare.


Author(s):  
Mohammad Yahya Vahidi Mehrjardi ◽  
Seyed Mohsen Aghaei Zarch ◽  
Mohammadreza Dehghani

Background: HOX genes are an exceedingly preserved family of homeodomain-involving transcription factors. They are related to a number of malignancies, comprising acute myeloid leukemia (AML). This study aimed to evaluate the effect of HOXB1 7bp deletion mutation on HOXB1gene expression in 36 individuals. Materials and Methods: The present cross-sectional study was done on a large Iranian family. In this experimental study, 5 homozygous 7bp deletion individuals along with their unaffected siblings and their parents were investigated. The candidate gene, HOXB1 was screened and analyzed in blood samples of these participants. After RNA extraction, cDNA was synthesized according to manufacturer’s protocol. HOXB1 expression level was analyzed by 2ΔΔCT method. All laboratory procedures used in this experimental study were carried out in genetic laboratory of Shahid Sadoughi University of Medical Sciences. Results: Sequence analysis of HOXB1 gene by ABI Prism 3130 Genetic Analyzer (Applied Biosystems, Foster City, CA, USA) revealed a family with 5 homozygous (22±17 years) and 22 healthy heterozygous carriers (42±19 years) for 7bp deletion in HOXB1 gene along with 9  healthy wild type (55±41 years). Gene expression analysis by RT-qPCR demonstrated that expression level of HOXB1 gene in wild type and heterozygous carriers specimens had similar levels (p=0.05). Conclusion: Although HOXB1 mutations has been reported in AML, but association between HOXB1 mutation and AML was not found in our study. Additionally, HOXB1 expression levels showed no significant difference between wild type and heterozygous carriers. So, HOXB1 gene expression cannot provide a powerful tool to differentiate wild type from heterozygous carries.


Author(s):  
Zhigang Fang ◽  
Zhaoyang Hu ◽  
Xinqiang Yin ◽  
Gang Song ◽  
Qingsheng Cai

Subcellular fractions and the chemical forms of cadmium (Cd) reflect its level of toxicity to plants; however, these effects of exogenous glutathione (GSH) are poorly understood. We exposed two Italian ryegrass (Lolium multiflorum) cultivars (IdyII and Harukaze) to 50 µM Cd or 200 µM GSH to investigate the effect of GSH on the Cd uptake, subcellular compartments, and chemical forms. Cd significantly inhibited the plant growth, while GSH supplementation decreased this inhibition. The application of GSH significantly improved the Cd concentration in the roots but reduced that in the shoots and decreased the Cd translocation from root to shoot. The Cd concentration of the root in the cell wall was increased while the concentration in the soluble fraction was decreased when supplied with GSH. The inorganic form (80% ethanol for Cd extraction) in the roots was significantly reduced when treated with GSH. The Cd form extracted by 2% acetic acid (HAC) with low toxicity and immobility were greatly increased. In leaves, the application GSH decreased in any form of Cd form extracted. In conclusion, exogenous GSH decreased the translocation of Cd and alleviated Italian ryegrass Cd toxicity by accumulating more Cd in the root cell wall and immobilizing more Cd in lower toxicity fractions.


Plants ◽  
2021 ◽  
Vol 10 (1) ◽  
pp. 87
Author(s):  
James Mutemachani Mapodzeke ◽  
Muhammad Faheem Adil ◽  
Dongming Wei ◽  
Heren Issaka Joan ◽  
Younan Ouyang ◽  
...  

Excessive industrialization and the usage of pesticides plague the farming soils with heavy metals, reducing the quality of arable land. Assessing phytoavailability of cadmium (Cd) from growth medium to plant system is crucial and necessitates precise and timely monitoring of Cd to ensure food safety. Zinc (Zn) and silicon (Si) have singularly demonstrated the potential to ameliorate Cd toxicity and are important for agricultural production, human health, and environment in general. However, Zn-Si interaction on Cd toxicity alleviation, their effects and underlying mechanisms are still fragmentarily understood. Seven treatments were devised besides control to evaluate the single and combined effects of Zn and Si on the physio-biochemical attributes and ultrastructural fingerprints of Cd-treated rice genotypes, i.e., Cd tolerant “Xiushui-110” and Cd sensitive “HIPJ-1”. Supplementation of both Zn and Si promoted plant biomass, photosynthetic parameters, ionic balance, and improved chloroplast ultrastructure with minimized Cd uptake and malondialdehyde (MDA) content due to the activation of antioxidant enzymes in Cd stressed plants. The combined effects of 10 μM Zn and 15 μM Si on 15 μM Cd displayed a greater reduction in Cd uptake and root-leaf MDA content, while enhancing photosynthetic activity, superoxide dismutase (SOD) activity and root-leaf ultrastructure particularly in HIPJ-1, whilst Xiushui-110 had an overall higher leaf catalase (CAT) activity and a higher root length and shoot height was observed in both genotypes compared to the Cd 15 µM treatment. Alone and combined Zn and Si alleviation treatments reduced Cd translocation from the root to the stem for HIPJ-1 but not for Xiushui-110. Our results confer that Zn and Si singularly and in combination are highly effective in reducing tissue Cd content in both genotypes, the mechanism behind which could be the dilution effect of Cd due to improved biomass and competitive nature of Zn and Si, culminating in Cd toxicity alleviation. This study could open new avenues for characterizing interactive effects of simultaneously augmented nutrients in crops and provide a bench mark for crop scientists and farmers to improve Cd tolerance in rice.


2020 ◽  
Vol 41 (Supplement_2) ◽  
Author(s):  
P Milani ◽  
L Obici ◽  
R Mussinelli ◽  
M Basset ◽  
G Manfrinato ◽  
...  

Abstract Background Cardiac wild type transthyretin (ATTRwt) amyloidosis, formerly known as senile systemic amyloidosis, is an increasingly recognized, progressive, and fatal cardiomyopathy. Two biomarkers staging systems were proposed based on NT-proBNP (in both cases) and troponin or estimated glomerular filtration rate, that are able to predict survival in this population. The availability of novel effective treatments requires large studies to describe the natural history of the disease in different populations. Objective To describe the natural history of the disease in a large, prospective, national series. Methods Starting in 2007, we protocolized data collection in all the patients diagnosed at our center (n=400 up to 7/2019). Results The referrals to our center increased over time: 5 cases (1%) between 2007–2009, 33 (9%) in 2010–2012, 90 (22%) in 2013–2015 and 272 (68%) in 2016–2019. Median age was 76 years [interquartile range (IQR): 71–80 years] and 372 patients (93%) were males. One hundred and seventy-three (43%) had atrial fibrillation, 63 (15%) had a history of ischemic cardiomyopathy and 64 (15%) underwent pacemaker or ICD implantation. NYHA class was I in 58 subjects (16%), II in 225 (63%) and III in 74 (21%). Median NT-proBNP was 3064 ng/L (IQR: 1817–5579 ng/L), troponin I 0.096 ng/mL (IQR: 0.063–0.158 ng/mL), eGFR 62 mL/min (IQR: 50–78 mL/min). Median IVS was 17 mm (IQR: 15–19 mm), PW 16 mm (IQR: 14–18 mm) and EF 53% (IQR: 45–57%). One-hundred and forty-eight subjects (37%) had a concomitant monoclonal component in serum and/or urine and/or an abnormal free light chain ratio. In these patients, the diagnosis was confirmed by immunoelectron microscopy or mass spectrometry. In 252 (63%) the diagnosis was based on bone scintigraphy. DNA analysis for amyloidogenic mutations in transthyretin and apolipoprotein A-I genes was negative in all subjects. The median survival of the whole cohort was 59 months. The Mayo Clinic staging based on NT-proBNP (cutoff: 3000 ng/L) and troponin I (cutoff: 0.1 ng/mL) discriminated 3 different groups [stage I: 131 (35%), stage II: 123 (32%) and stage III: 127 (33%)] with different survival between stage I and II (median 86 vs. 81 months, P=0.04) and between stage II and III (median 81 vs. 62 months, P<0.001). The UK staging system (NT-proBNP 3000 ng/L and eGFR 45 mL/min), discriminated three groups [stage I: 170 (45%), stage II: 165 (43%) and stage III: 45 (12%)] with a significant difference in survival: between stage I and stage II (86 vs. 52 months, P<0.001) and between stage II and stage III (median survival 52 vs. 33 months, P=0.045). Conclusions This is one of the largest series of patients with cardiac ATTRwt reported so far. Referrals and diagnoses increased exponentially in recent years, One-third of patients has a concomitant monoclonal gammopathy and needed tissue typing. Both the current staging systems offered good discrimination of staging and were validated in our independent cohort. Funding Acknowledgement Type of funding source: None


2021 ◽  
Vol 11 (15) ◽  
pp. 7118
Author(s):  
Ermina Hadzic ◽  
Garth Blackler ◽  
Holly Dupuis ◽  
Stephen James Renaud ◽  
Christopher Thomas Appleton ◽  
...  

Post-traumatic osteoarthritis (PTOA) is a degenerative joint disease, leading to articular cartilage breakdown, osteophyte formation, and synovitis, caused by an initial joint trauma. Pro-inflammatory cytokines increase catabolic activity and may perpetuate inflammation following joint trauma. Interleukin-15 (IL-15), a pro-inflammatory cytokine, is increased in OA patients, although its roles in PTOA pathophysiology are not well characterized. Here, we utilized Il15 deficient rats to examine the role of IL-15 in PTOA pathogenesis in an injury-induced model. OA was surgically induced in Il15 deficient Holtzman Sprague-Dawley rats and control wild-type rats to compare PTOA progression. Semi-quantitative scoring of the articular cartilage, subchondral bone, osteophyte size, and synovium was performed by two blinded observers. There was no significant difference between Il15 deficient rats and wild-type rats following PTOA-induction across articular cartilage damage, subchondral bone damage, and osteophyte scoring. Similarly, synovitis scoring across six parameters found no significant difference between genetic variants. Overall, IL-15 does not appear to play a key role in the development of structural changes in this surgically-induced rat model of PTOA.


Animals ◽  
2020 ◽  
Vol 11 (1) ◽  
pp. 37
Author(s):  
Ying Zhao ◽  
Zixiang Lin ◽  
Zhaoyan Lin ◽  
Chaoyu Zhou ◽  
Gang Liu ◽  
...  

Mucin 1 (MUC1), a transmembrane protein, is closely associated with the malignancy and metastasis of canine mammary tumors; however, the role of overexpressed MUC1 in the development of cancer cells and response to drug treatment remains unclear. To address this question, we developed a new canine mammary tumor cell line, CIPp-MUC1, with an elevated expression level of MUC1. In vitro studies showed that CIPp-MUC1 cells are superior in proliferation and migration than wild-type control, which was associated with the upregulation of PI3K, p-Akt, mTOR, Bcl-2. In addition, overexpression of MUC1 in CIPp-MUC1 cells inhibited the suppressing activity of disulfiram on the growth and metastasis of tumor cells, as well as inhibiting the pro-apoptotic effect of disulfiram. In vivo studies, on the other side, showed more rapid tumor growth and stronger resistance to disulfiram treatment in CIPp-MUC1 xenograft mice than in wild-type control. In conclusion, our study demonstrated the importance of MUC1 in affecting the therapeutical efficiency of disulfiram against canine mammary tumors, indicating that the expression level of MUC1 should be considered for clinical use of disulfiram or other drugs targeting PI3K/Akt pathway.


2018 ◽  
Vol 64 (No. 8) ◽  
pp. 379-385 ◽  
Author(s):  
Zhu Bo ◽  
Han Hongjuan ◽  
Fu Xiaoyan ◽  
Li Zhenjun ◽  
Gao Jianjie ◽  
...  

The explosive 2,4,6-trinitrotoluene (TNT) is a highly toxic and persistent environmental pollutant. TNT is toxic to many organisms, it is known to be a potential human carcinogen, and is persistent in the environment. This study presents a system of phytoremediation by Arabidopsis plants developed on the basis of overexpression of NAD(P)H-flavin nitroreductase (NFSB) from the Sulfurimonas denitrificans DSM1251. The resulting transgenic Arabidopsis plants demonstrated significantly enhanced TNT tolerance and a strikingly higher capacity to remove TNT from their media. The highest specific rate constant of TNT disappearance rate was 1.219 and 2.297 mL/g fresh weight/h for wild type and transgenic plants, respectively. Meanwhile, the nitroreductase activity in transgenic plant was higher than wild type plant. All this indicates that transgenic plants show significantly enhanced tolerances to TNT; transgenic plants also exhibit strikingly higher capabilities of removing TNT from their media and high efficiencies of transformation.


Sign in / Sign up

Export Citation Format

Share Document