29 research outputs found
The Promise of a Cooperative and Proportional Discovery Process in North Carolina: House Bill 380 and the New State Electronic Discovery Rules
Using the experience of the federal courts under the 2006 Amendments as a guide, this Article examines H.B. 380 and the effect it will have on the discovery process in the state courts. Part I of this Article describes the litigation challenges created by the proliferation of ESI. Part II describes the history, structure and substance of the 2006 Amendments, and discusses their impact in the areas of cooperation and the use of proportionality principles in the federal courts. Part III describes the substance and structure of the rules changes encompassed by H.B. 380, and analyzes the effect that they will have on the discovery process in the State. Part IV discusses specific procedural tools that practitioners and courts can use under the new e-discovery rules in North Carolina to manage the exchange of ESI more efficiently
The Promise of a Cooperative and Proportional Discovery Process in North Carolina: House Bill 380 and the New State Electronic Discovery Rules
Using the experience of the federal courts under the 2006 Amendments as a guide, this Article examines H.B. 380 and the effect it will have on the discovery process in the state courts. Part I of this Article describes the litigation challenges created by the proliferation of ESI. Part II describes the history, structure and substance of the 2006 Amendments, and discusses their impact in the areas of cooperation and the use of proportionality principles in the federal courts. Part III describes the substance and structure of the rules changes encompassed by H.B. 380, and analyzes the effect that they will have on the discovery process in the State. Part IV discusses specific procedural tools that practitioners and courts can use under the new e-discovery rules in North Carolina to manage the exchange of ESI more efficiently
Four Years Later: How the 2006 Amendments to the Federal Rules Have Reshaped the E-Discovery Landscape and are Revitalizing the Civil Justice System
The 2006 amendments to the Federal Rules of Civil Procedure, which were enacted to address the potentially immense burden involved in the discovery of electronically-stored information (“ESI”), set in motion a process that is revitalizing the primary purpose of the Federal Rules of Civil Procedure adopted nearly seventy years earlier: “to secure the just, speedy, and inexpensive determination of every action and proceeding.” One of the principal means through which the Federal Rules of Civil Procedure achieve this purpose is by allowing for the discovery of “any nonprivileged matter that is relevant to any party’s claim or defense.” The reasoning behind these liberal discovery rules is that once parties know, ostensibly through discovery, their respective positions in a dispute, they will reach a resolution more quickly and efficiently
Oligodendrocytes contribute to motor neuron death in ALS via SOD1 dependent mechanism
Oligodendrocytes have recently been implicated in the pathophysiology of ALS. Here we show that, in vitro, mutant SOD1 mouse oligodendrocytes induce wild-type motor neuron hyperexcitability and death. Moreover, we efficiently derived human oligodendrocytes from a large number of controls, sporadic and familial ALS patients using two different reprogramming methods. All ALS oligodendrocyte lines induced motor neuron death through conditioned medium and in co-culture. Conditioned medium-mediated motor neuron death was associated with decreased lactate production and release, while toxicity in co-culture was lactate independent, demonstrating that motor neuron survival is not only mediated by soluble factors.
Remarkably, human SOD1 shRNA treatment resulted in motor neuron rescue in both mouse and human cultures when knockdown was achieved in progenitor cells, while it was ineffective in differentiated oligodendrocytes.
Early SOD1 knockdown, in fact, rescued lactate impairment and cell toxicity in all lines tested with exclusion of samples carrying C9orf72 repeat expansions. These did not respond to SOD1 knockdown nor showed lactate release impairment.
Our data indicate that SOD1 is directly or indirectly involved in ALS oligodendrocyte pathology and suggest that in this cell type some damage might be irreversible. In addition, we demonstrate that C9ORF72 patients represent an independent patient group that might not respond to the same treatment
SRPK1 maintains acute myeloid leukemia through effects on isoform usage of epigenetic regulators including BRD4.
We recently identified the splicing kinase gene SRPK1 as a genetic vulnerability of acute myeloid leukemia (AML). Here, we show that genetic or pharmacological inhibition of SRPK1 leads to cell cycle arrest, leukemic cell differentiation and prolonged survival of mice transplanted with MLL-rearranged AML. RNA-seq analysis demonstrates that SRPK1 inhibition leads to altered isoform levels of many genes including several with established roles in leukemogenesis such as MYB, BRD4 and MED24. We focus on BRD4 as its main isoforms have distinct molecular properties and find that SRPK1 inhibition produces a significant switch from the short to the long isoform at the mRNA and protein levels. This was associated with BRD4 eviction from genomic loci involved in leukemogenesis including BCL2 and MYC. We go on to show that this switch mediates at least part of the anti-leukemic effects of SRPK1 inhibition. Our findings reveal that SRPK1 represents a plausible new therapeutic target against AML
Korarchaeota Diversity, Biogeography, and Abundance in Yellowstone and Great Basin Hot Springs and Ecological Niche Modeling Based on Machine Learning
Over 100 hot spring sediment samples were collected from 28 sites in 12 areas/regions, while recording as many coincident geochemical properties as feasible (>60 analytes). PCR was used to screen samples for Korarchaeota 16S rRNA genes. Over 500 Korarchaeota 16S rRNA genes were screened by RFLP analysis and 90 were sequenced, resulting in identification of novel Korarchaeota phylotypes and exclusive geographical variants. Korarchaeota diversity was low, as in other terrestrial geothermal systems, suggesting a marine origin for Korarchaeota with subsequent niche-invasion into terrestrial systems. Korarchaeota endemism is consistent with endemism of other terrestrial thermophiles and supports the existence of dispersal barriers. Korarchaeota were found predominantly in >55°C springs at pH 4.7–8.5 at concentrations up to 6.6×106 16S rRNA gene copies g−1 wet sediment. In Yellowstone National Park (YNP), Korarchaeota were most abundant in springs with a pH range of 5.7 to 7.0. High sulfate concentrations suggest these fluids are influenced by contributions from hydrothermal vapors that may be neutralized to some extent by mixing with water from deep geothermal sources or meteoric water. In the Great Basin (GB), Korarchaeota were most abundant at spring sources of pH<7.2 with high particulate C content and high alkalinity, which are likely to be buffered by the carbonic acid system. It is therefore likely that at least two different geological mechanisms in YNP and GB springs create the neutral to mildly acidic pH that is optimal for Korarchaeota. A classification support vector machine (C-SVM) trained on single analytes, two analyte combinations, or vectors from non-metric multidimensional scaling models was able to predict springs as Korarchaeota-optimal or sub-optimal habitats with accuracies up to 95%. To our knowledge, this is the most extensive analysis of the geochemical habitat of any high-level microbial taxon and the first application of a C-SVM to microbial ecology
Vilhelm Lundstedt’s ‘Legal Machinery’ and the Demise of Juristic Practice
This article aims to contribute to the academic debate on the general crisis faced by law schools and the legal professions by discussing why juristic practice is a matter of experience rather than knowledge. Through a critical contextualisation of Vilhelm Lundstedt’s thought under processes of globalisation and transnationalism, it is argued that the demise of the jurist’s function is related to law’s scientification as brought about by the metaphysical construction of reality. The suggested roadmap will in turn reveal that the current voiding of juristic practice and its teaching is part of the crisis regarding what makes us human
Low Frequency Vibrations Disrupt Left-Right Patterning in the Xenopus Embryo
The development of consistent left-right (LR) asymmetry across phyla is a fascinating question in biology. While many pharmacological and molecular approaches have been used to explore molecular mechanisms, it has proven difficult to exert precise temporal control over functional perturbations. Here, we took advantage of acoustical vibration to disrupt LR patterning in Xenopus embryos during tightly-circumscribed periods of development. Exposure to several low frequencies induced specific randomization of three internal organs (heterotaxia). Investigating one frequency (7 Hz), we found two discrete periods of sensitivity to vibration; during the first period, vibration affected the same LR pathway as nocodazole, while during the second period, vibration affected the integrity of the epithelial barrier; both are required for normal LR patterning. Our results indicate that low frequency vibrations disrupt two steps in the early LR pathway: the orientation of the LR axis with the other two axes, and the amplification/restriction of downstream LR signals to asymmetric organs
Microbiology and geochemistry of Little Hot Creek, a hot spring environment in the Long Valley Caldera
A culture-independent community census was combined with chemical and thermodynamic analyses of three springs located within the Long Valley Caldera, Little Hot Creek (LHC) 1, 3, and 4. All three springs were approximately 80 °C, circumneutral, apparently anaerobic and had similar water chemistries. 16S rRNA gene libraries constructed from DNA isolated from spring sediment revealed moderately diverse but highly novel microbial communities. Over half of the phylotypes could not be grouped into known taxonomic classes. Bacterial libraries from LHC1 and LHC3 were predominantly species within the phyla Aquificae and Thermodesulfobacteria, while those from LHC4 were dominated by candidate phyla, including OP1 and OP9. Archaeal libraries from LHC3 contained large numbers ofArchaeoglobales and Desulfurococcales, while LHC1 and LHC4 were dominated by Crenarchaeota unaffiliated with known orders. The heterogeneity in microbial populations could not easily be attributed to measurable differences in water chemistry, but may be determined by availability of trace amounts of oxygen to the spring sediments. Thermodynamic modeling predicted the most favorable reactions to be sulfur and nitrate respirations, yielding 40–70 kJ mol−1 e− transferred; however, levels of oxygen at or below our detection limit could result in aerobic respirations yielding up to 100 kJ mol−1 e− transferred. Important electron donors are predicted to be H2, H2S, S0, Fe2+and CH4, all of which yield similar energies when coupled to a given electron acceptor. The results indicate that springs associated with the Long Valley Caldera contain microbial populations that show some similarities both to springs in Yellowstone and springs in the Great Basin