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9篇 您的检索式:作者名="L Delunas"
    题名 作者 年代 出处 被引量
1In vitro and in vivo evaluations of intestinal barriers of the zwitterion L-767679 and its carboxyl ester prodrug L-775318显示文摘PRUEKSARITANONT T DELUNA P GORHAM L M 1998Drug Metab Dispos1998,26,6:1
2Compelling Evidence of the Need for Corporate Work-Life Balance Initiatives:Results from a National Survey of Stressful Life Events显示文摘HOBSON C J DELUNAS L KESIC D 0,,1:1
3Prevention of elder abuse: Betty Neuman health care systems approach显示文摘Delunas L R 1990Clin Nurse Spec1990,4,1:1
4Hostility and CHD (coronary heart disease)显示文摘Delunas L R 1997Rehabil Nurs1997,22,:1
5GDH1 expression is regulated by GLN3,GCN4,and HAP4 under respiratory growth显示文摘Riego L Avendano A DeLuna A 2002Biochem Biophys Res Commun2002,293,1:1
6Swi/SNF -GCN5-dependent chromatin remodelling determines induced expression of GDH3,one of the paralogous genes responsible for ammonium assimilation and glutamate biosynthesis in Saccharomyces cerevisiae显示文摘Avendano A Riego L DeLuna A 2005Mol Microbiol2005,57,1:1
7In vitro and in vivo evaluations of intestinal barriers of the zwitterion L-767679 and its carboxyl ester prodrug L-775318显示文摘PRUEKSARITANONT T DELUNA P GORHAM L M 1998Drug Metab Dispos1998,26,6:1
8Compelling Evidence of the Need for Corperate Work/Life Balance Initiatives:Results from a National Survey of Stressful Life-Events显示文摘C J Hobson L Delunas 2001Journal of Employment Counseling2001,38,1:1
9The protein-protein interaction landscape of transcription factors during gynoecium development in Arabidopsis显示文摘Flowers are composed of organs whose identity is defined by the combinatorial activity of transcription factors(TFs).The interactions between MADS-box TFs and protein complex formation have been schematized in the floral quartet model of flower development.The gynoecium is the flower’s female reproductive part,crucial for fruit and seed production and,hence,for reproductive success.After the establishment of carpel identity,many tissues arise to form a mature gynoecium.TFs have been described as regulators of gynoecium development,and some interactions and complexes have been identified.However,broad knowledge about the interactions among these TFs and their participation during development remains scarce.In this study,we used a systems biology approach to understand the formation of a complex reproductive unit—as the gynoecium—by mapping binary interactions between well-characterized TFs.We analyzed almost 4500 combinations and detected more than 250 protein-protein interactions(PPIs),resulting in a process-specific interaction map.Topological analyses suggest hidden functions and novel roles for many TFs.In addition,we observed a close relationship between TFs involved in auxin and cytokinin-signaling pathways and other TFs.Furthermore,we analyzed the network by combining PPI data,expression,and genetic data,which helped us to dissect it into several dynamic spatio-temporal subnetworks related to gynoecium development processes.Finally,we generated an extended PPI network that predicts new players in gynoecium development.Taken together,all these results serve as a valuable resource for the plant community.Humberto Herrera-Ubaldo Sergio E.Campos Pablo López-Gómez Valentín Luna-García Víctor M.Zúñiga-Mayo Gerardo E.Armas-Caballero Karla L.González-Aguilera Alexander DeLuna Nayelli Marsch-Martínez Carlos Espinosa-Soto Stefan de Folter 2023Molecular Plant2023,16,1:0
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