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Institution

Martin Luther University of Halle-Wittenberg

EducationHalle, Germany
About: Martin Luther University of Halle-Wittenberg is a education organization based out in Halle, Germany. It is known for research contribution in the topics: Population & Liquid crystal. The organization has 20232 authors who have published 38773 publications receiving 965004 citations. The organization is also known as: MLU & University of Wittenberg.


Papers
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Journal ArticleDOI
TL;DR: The authors examined the impact of parental goals and acculturation contexts on value transmission in Turkish parent-child dyads in Germany and 190 Turkish and Moroccan families in the Netherlands, and found that more collectivistic parents stressed conformity more, thereby enhancing effective transmission.
Abstract: This study examines the impact of parental goals and acculturation contexts on value transmission in immigrant families. Combining cross-national and cross-ethnic comparisons, 400 Turkish parent-child dyads in Germany and 190 Turkish and Moroccan dyads in the Netherlands were asked to report their commitment to family-based collectivism and individualism, their academic aspirations, as well as conformity, autonomy, and achievement goal stresses in their family. First, value transmission was selective. Across cultures, parental collectivism values were transmitted, but not individualism. Only in Germany, parental aspirations were also transmitted. Second, value transmission was mediated by parental goals. Across cultures, more collectivistic parents stressed conformity more, thereby enhancing effective transmission. Third, transmission was significant after controlling for gender and educational status of parents and youngsters. Finally, our transmission model was replicated across acculturation contexts a...

283 citations

Journal ArticleDOI
TL;DR: The crystal structure of the GLP-1 receptor extracellular domain in complex with the competitive antagonist exendin-4 is solved and shows that important hydrophobic ligand-receptor interactions are conserved in agonist- and antagonist-bound forms of the extacellular domain, but certain residues in the ligands-binding site adopt a GLp-1-specific conformation.

283 citations

Journal ArticleDOI
TL;DR: The data presented in this study suggest that bacteria are killed rapidly on dry copper surfaces, and several factors, such as copper ion toxicity, copper chelators, cold, osmotic stress, and reactive oxygen species, influenced killing rates.
Abstract: Bacterial contamination of touch surfaces poses a serious threat for public health. The use of bactericidal surface materials, such as copper and its alloys, might constitute a way to aid the use of antibiotics and disinfectants, thus minimizing the risk of emergence and spread of multiresistant germs. The survival of Escherichia coli on metallic copper surfaces has been studied previously; however, the mechanisms underlying bacterial inactivation on copper surfaces have not been elucidated. Data presented in this study suggest that bacteria are killed rapidly on dry copper surfaces. Several factors, such as copper ion toxicity, copper chelators, cold, osmotic stress, and reactive oxygen species, but not anaerobiosis, influenced killing rates. Strains deleted in copper detoxification systems were slightly more sensitive than was the wild type. Preadaptation to copper enhanced survival rates upon copper surface exposure. This study constitutes a first step toward understanding the reasons for metallic copper surface-mediated killing of bacteria.

282 citations

Journal ArticleDOI
TL;DR: In this review recent data are discussed with emphasis on wound-signaling in tomato, with the common occurrence of JA biosynthesis and systemin generation in the vascular bundles suggest JA as the systemic signal.

282 citations

Journal ArticleDOI
24 May 2010-Oncogene
TL;DR: Altered microRNA signatures are identified as potent markers for ATCs that promote de-/transdifferentiation (EMT) and invasion of these neoplasias and TGFBR1 inhibition could have a significant potential for the treatment of A TCs and possibly other invasive tumors.
Abstract: Anaplastic thyroid carcinomas (ATCs) arise from epithelial thyroid cells by mesenchymal de-/transdifferentiation and rapidly invade the adjacent tissue. Specific microRNA signatures were suggested to distinguish ATCs from normal thyroid tissue and other thyroid carcinomas of follicular origin. Whether distinct microRNA patterns correlate with de-/transdifferentiation and invasion of ATCs remained elusive. We identified two significantly decreased microRNA families that unambiguously distinguish ATCs from papillary and follicular thyroid carcinomas: miR-200 and miR-30. Expression of these microRNAs in mesenchymal ATC-derived cells reduced their invasive potential and induced mesenchymal-epithelial transition (MET) by regulating the expression of MET marker proteins. Supporting the role of transforming growth factor (TGF)beta signaling in modulating MET/epithelial-mesenchymal transition (EMT), expression of SMAD2 and TGFBR1, upregulated in most primary ATCs, was controlled by members of the miR-30 and/or miR-200 families in ATC-derived cells. Inhibition of TGFbeta receptor 1 (TGFBR1) in these cells induced MET and reduction of prometastatic miR-21, but caused an increase of the miR-200 family. These findings identify altered microRNA signatures as potent markers for ATCs that promote de-/transdifferentiation (EMT) and invasion of these neoplasias. Hence, TGFBR1 inhibition could have a significant potential for the treatment of ATCs and possibly other invasive tumors.

281 citations


Authors

Showing all 20466 results

NameH-indexPapersCitations
Niels Birbaumer14283577853
Michael Schmitt1342007114667
Niels E. Skakkebæk12759659925
Stefan D. Anker117415104945
Pedro W. Crous11580951925
Eric Verdin11537047971
Bernd Nilius11249644812
Josep Tabernero11180368982
Hans-Dieter Volk10778446622
Dan Rujescu10655260406
John I. Nurnberger10552251402
Ulrich Gösele10260346223
Wolfgang J. Parak10246943307
Martin F. Bachmann10041534124
Munir Pirmohamed9767539822
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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
202397
2022331
20212,038
20202,007
20191,617
20181,604