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  • Evolutionary trends and functional anatomy of the human expanded autophagy network.

Evolutionary trends and functional anatomy of the human expanded autophagy network.

Autophagy (2015-06-24)
Andreas Till, Rintaro Saito, Daria Merkurjev, Jing-Jing Liu, Gulam Hussain Syed, Martin Kolnik, Aleem Siddiqui, Martin Glas, Björn Scheffler, Trey Ideker, Suresh Subramani
摘要

All eukaryotic cells utilize autophagy for protein and organelle turnover, thus assuring subcellular quality control, homeostasis, and survival. In order to address recent advances in identification of human autophagy associated genes, and to describe autophagy on a system-wide level, we established an autophagy-centered gene interaction network by merging various primary data sets and by retrieving respective interaction data. The resulting network ('AXAN') was analyzed with respect to subnetworks, e.g. the prime gene subnetwork (including the core machinery, signaling pathways and autophagy receptors) and the transcription subnetwork. To describe aspects of evolution within this network, we assessed the presence of protein orthologs across 99 eukaryotic model organisms. We visualized evolutionary trends for prime gene categories and evolutionary tracks for selected AXAN genes. This analysis confirms the eukaryotic origin of autophagy core genes while it points to a diverse evolutionary history of autophagy receptors. Next, we used module identification to describe the functional anatomy of the network at the level of pathway modules. In addition to obvious pathways (e.g., lysosomal degradation, insulin signaling) our data unveil the existence of context-related modules such as Rho GTPase signaling. Last, we used a tripartite, image-based RNAi - screen to test candidate genes predicted to play a role in regulation of autophagy. We verified the Rho GTPase, CDC42, as a novel regulator of autophagy-related signaling. This study emphasizes the applicability of system-wide approaches to gain novel insights into a complex biological process and to describe the human autophagy pathway at a hitherto unprecedented level of detail.

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G 418 二硫酸盐, powder, BioReagent, suitable for cell culture
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抗 β-肌动蛋白抗体,小鼠单克隆, clone AC-15, purified from hybridoma cell culture
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3-甲基腺嘌呤, autophagy inhibitor
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巴弗洛霉素A1,灰色链霉菌, Bafilomycin A1, CAS 88899-55-2, acts as a highly potent and specific inhibitor of vacuolar-type H+-ATPase (Ki = 500 pM). Blocks the fusion of autophagosome with lysosome.
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抗-泛素抗体,Lys63 特异性,克隆Apu3,兔单克隆, clone Apu3, from rabbit