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Paul R. Odgren Craig H. Pratt Carole A. MacKay April Mason-Savas Michelle Curtain Lindsay Shopland Tsutomu Ichicki John P. Sundberg Leah Rae Donahue 《PloS one》2010,5(4)
Background
Investigations of naturally-occurring mutations in animal models provide important insights and valuable disease models. Lamins A and C, along with lamin B, are type V intermediate filament proteins which constitute the proteinaceous boundary of the nucleus. LMNA mutations in humans cause a wide range of phenotypes, collectively termed laminopathies. To identify the mutation and investigate the phenotype of a spontaneous, semi-dominant mutation that we have named Disheveled hair and ear (Dhe), which causes a sparse coat and small external ears in heterozygotes and lethality in homozygotes by postnatal day 10.Findings
Genetic mapping identified a point mutation in the Lmna gene, causing a single amino acid change, L52R, in the coiled coil rod domain of lamin A and C proteins. Cranial sutures in Dhe/+ mice failed to close. Gene expression for collagen types I and III in sutures was deficient. Skulls were small and disproportionate. Skeletons of Dhe/+ mice were hypomineralized and total body fat was deficient in males. In homozygotes, skin and oral mucosae were dysplastic and ulcerated. Nuclear morphometry of cultured cells revealed gene dose-dependent blebbing and wrinkling.Conclusion
Dhe mice should provide a useful new model for investigations of the pathogenesis of laminopathies. 相似文献83.
Henrik ?sterblom U. Rashid Sumaila ?rjan Bodin Jonas Hentati Sundberg Anthony J. Press 《PloS one》2010,5(9)
Background
Illegal, Unreported and Unregulated (IUU) fishing is a problem for marine resource managers, leading to depletion of fish stocks and negative impacts on marine ecosystems. These problems are particularly evident in regions with weak governance. Countries responsible for sustainable natural resource management in the Southern Ocean have actively worked to reduce IUU fishing in the region over a period of 15 years, leading to a sequence of three distinct peaks of IUU fishing.Methodology/Principal Findings
We reviewed existing public records relating to IUU fishing in the Southern Ocean between 1995–2009 and related this information to the governance capacity of flag states responsible for IUU vessels. IUU operators used a number of methods to adapt to enforcement actions, resulting in reduced risks of detection, apprehension and sanctioning. They changed fishing locations, vessel names and flag states, and ports for offloading IUU catches. There was a significant decrease in the proportion of IUU vessels flagged to CCAMLR countries, and a significant decrease in the average governance index of flag states. Despite a decreasing trend of IUU fishing, further actions are hampered by the regional scope of CCAMLR and the governance capacity of responsible states.Conclusions/Significance
This is the first study of long-term change in the modus operandi of IUU fishing operators, illustrating that IUU operators can adapt to enforcement actions and that such dynamics may lead to new problems elsewhere, where countries have a limited capacity. This outsourcing of problems may have similarities to natural resource extraction in other sectors and in other regions. IUU fishing is the result of a number of factors, and effectively addressing this major challenge to sustainable marine resource extraction will likely require a stronger focus on governance. Highly mobile resource extractors with substantial funds are able to adapt to changing regulations by exploiting countries and regions with limited capacity. 相似文献84.
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We tested the hypothesis that changed microclimate at induced forest edges causes reduced growth of epiphytic lichens. Two
foliose, green algal lichens were transplanted to the lower canopy of a mature Picea abies forest at six distances (2, 6.25, 12.5, 25, 50 and 100 m) from a clearcut. The biomass growth in Platismatia glauca (6.2% in 16 months) was 41% higher than in Lobaria pulmonaria (4.4%). We found no growth reduction near the forest edge. In contrast, the highest growth in both species occurred within
12 m from the edge. Further, fluorescence and chlorophyll measurements showed that lichen vitality was unaffected by distance
from edge. The light intensity was 4.3 times higher at the edge than in the interior during the growing season, but there
were only minor differences in air temperature and relative humidity. Monitoring of thallus water content revealed clear differences
in both number and length of wetting and drying cycles. However, the total time with water content sufficient for photosynthetic
activity was only slightly higher at the edge. The data thus indicate that our gradient in microclimate was too small to significantly
affect lichen growth, and that lichens are largely metabolically inactive when large edge-interior contrasts in microclimate
occur. Lichen response to forest edge microclimate results from intricate interactions among several biotic and abiotic factors.
Linking data on lichen growth, microclimate and thallus water content with physiological measurements provides a framework
for future studies of the mechanisms behind abiotic edge effects.
Received: 15 April 1996 / Accepted: 21 June 1996 相似文献
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The Helicobacter pylori adhesin protein HopQ exploits the dimer interface of human CEACAMs to facilitate translocation of the oncoprotein CagA 下载免费PDF全文
Daniel A Bonsor Qing Zhao Barbara Schmidinger Evelyn Weiss Jingheng Wang Daniel Deredge Robert Beadenkopf Blaine Dow Wolfgang Fischer Dorothy Beckett Patrick L Wintrode Rainer Haas Eric J Sundberg 《The EMBO journal》2018,37(13)
Helicobacter pylori infects half of the world's population, and strains that encode the cag type IV secretion system for injection of the oncoprotein CagA into host gastric epithelial cells are associated with elevated levels of cancer. CagA translocation into host cells is dependent on interactions between the H. pylori adhesin protein HopQ and human CEACAMs. Here, we present high‐resolution structures of several HopQ‐CEACAM complexes and CEACAMs in their monomeric and dimeric forms establishing that HopQ uses a coupled folding and binding mechanism to engage the canonical CEACAM dimerization interface for CEACAM recognition. By combining mutagenesis with biophysical and functional analyses, we show that the modes of CEACAM recognition by HopQ and CEACAMs themselves are starkly different. Our data describe precise molecular mechanisms by which microbes exploit host CEACAMs for infection and enable future development of novel oncoprotein translocation inhibitors and H. pylori‐specific antimicrobial agents. 相似文献
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