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First described in 1955 in New Jersey, epizootic haemorrhagic disease (EHD) causes a severe clinical disease in wild and domestic ruminants worldwide. Epizootic haemorrhagic disease outbreaks occur in deer populations each year from summer to late autumn. The etiological agent is EHD virus (EHDV) which is a double‐stranded segmented icosahedral RNA virus. EHD virus utilizes point mutations and reassortment strategies to maintain viral fitness during infection. In 2018, EHDV serotype 2 was predominantly detected in deer in Illinois. Whole genome sequencing was conducted for two 2018 EHDV2 isolates (IL41747 and IL42218) and the sequence analyses indicated that IL42218 was a reassortant between different serotypes whereas IL41747 was a genetically stable strain. Our data suggest that multiple strains contribute to outbreaks each year.  相似文献   
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As an early stage of plant transformation by Agrobacterium tumefaciens, the Ti plasmid is nicked at the border sequences that delimit the T-DNA. Cleavage results in covalent attachment of VirD2 to the 5' terminal of the nicked strand by a process resembling initiation of DNA transfer that occurs in the donor cell during bacterial conjugation. We demonstrate that this cleavage can be reproduced in vitro: VirD2 protein, the border-cleaving enzyme, was overproduced and purified. Cleavage assays were performed with single-stranded oligodeoxyribonucleotides encompassing the Ti plasmid border region or the transfer origin's nick region of the conjugative plasmid RP4. VirD2 of pTiC58 cleaves both border- and nick region-containing oligonucleotides. However, the relaxase TraI of RP4 can cut only the cognate nick regions. The respective proteins remain covalently bound to the 5' end of the cleavage sites, leaving the 3' termini unmodified. VirD2-mediated oligonucleotide cleavage was demonstrated to be an equilibrium reaction that allows specific joining of cleavage products restoring border and nick regions, respectively. The possible role of VirD2 in T-DNA integration into the plant cell's genome is discussed in terms of less stringent target-sequence requirements.  相似文献   
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Introduction:Minimally invasive partial nephrectomy is standard of care treatment for small renal masses.Objective:We evaluated the relationship between subcutaneous and visceral obesity with high-grade postoperative 30-day complications in patients undergoing minimally invasive partial nephrectomy.Methods:We retrospectively identified 98 patients at our institution from 2014 to 2017 who underwent laparoscopic or robotic-assisted partial nephrectomy due to suspected renal cell carcinoma. Patients were stratified based on presence or absence of high-grade (Clavien ≥ IIIa) 30-day postoperative complications. Means were compared with the independent t test and proportions with chi-square analysis. Multivariate logistic regression was performed to determine independent predictors of high-grade 30-day complications.Results:Mean nephrometry score was 6.7 with 21 (21.4%) patients having hilar tumors. Mean estimation of blood loss was 207 mL, mean operating time was 223 min, and mean warm ischemia time was 23 min. The majority of patients had clear renal cell carcinoma (n = 83, 84.7%) and pT1a disease (n = 76, 77.6%) with negative margins (n = 89, 90.8%) on pathology. There were 5 (5.1%) patients who experienced a high-grade postoperative 30-day complication. Mean visceral fat index was an independent predictor of high-grade 30-day complications (odds ratio: 1.02; 95% confidence interval: 1.002–1.03; p = 0.027).Conclusions:Visceral obesity should be considered as a prognostic indicator of outcomes in patients undergoing surgical treatment for a small renal mass.  相似文献   
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In response to acute myocardial infarction (MI), a complex series of cellular and molecular signaling events orchestrate the myocardial remodeling that ensues weeks to months after injury. Clinical, epidemiological, and pathological studies demonstrate that inadequate or impaired angiogenesis after myocardial injury is often associated with decreased left ventricular (LV) function and clinical outcomes. The microRNA family, miR-26, plays diverse roles in regulating key aspects of cellular growth, development, and activation. Recent evidence supports a central role for the miR-26 family in cardiovascular disease by controlling critical signaling pathways, such as BMP/SMAD1 signaling, and targets relevant to endothelial cell growth, angiogenesis, and LV function post-MI. Emerging studies of the miR-26 family in other cell types including vascular smooth muscle cells, cardiac fibroblasts, and cardiomyocytes suggest that miR-26 may bear important implications for a range of cardiovascular repair mechanisms. This review examines the current knowledge of the miR-26 family’s role in key cell types that critically control cardiovascular disease under pathological and physiological stimuli.  相似文献   
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Introduction  

Combined aortic and mitral valve disease is usually of rheumatic origin. In these patients we often encounter problem of small valve annuli particularly with aortic annulus. It is still debated whether a small prosthesis should be used or aortic root should be enlarged to prevent Patient Prosthesis Mismatch (PPM). This study was undertaken to review our strategy and feasibility of Aortic Root Enlargement (ARE) in patient undergo Double Valve Replacement (DVR) to avoid mismatch without increase in cost of treatment, morbidity or mortality.  相似文献   
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The IncP antibiotic-resistance plasmids transfer to a broad range of bacterial species. The RK2 origin of DNA transfer (oriT) consists of a 250-base-pair segment including the single-stranded cleavage site (nic) needed to generate the DNA strand believed to be transferred. Deletion derivatives and a bank of hydroxylamine-generated oriT mutants were screened for loss of transferability. DNA regions flanking both sides of nic are required for optimal transfer of the oriT clone. Of the chemically induced mutants, critical base-pair changes that dramatically reduced transfer frequency were found in a 10-base-pair region adjacent to nic. Relaxation (nicking) assays performed with these point mutants using protein-DNA complexes reconstituted in vitro revealed a correlation between DNA nicking and transfer frequency. Base-pair changes within the proximal arm of an inverted repeat upstream from the nick site resulted in reduced binding of the essential transfer protein TraJ and correspondingly reduced transfer frequencies. The results support a model of relaxosome formation involving at least two essential proteins: TraI and TraJ. The nick region defined by the point mutants was located in a segment known to be nearly identical in the related plasmid R751. This sequence was also found to be highly conserved in both border junctions of the transfer DNA (T-DNA) of plant tumor-inducing plasmids of Agrobacterium tumefaciens, indicating a relationship between IncP-mediated broad-host-range bacterial conjugation and T-DNA transfer to plants.  相似文献   
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