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  • Surface Properties Determining Passage Rates of Proteins through Nuclear Pores.

Surface Properties Determining Passage Rates of Proteins through Nuclear Pores.

Cell (2018-06-30)
Steffen Frey, Renate Rees, Jürgen Schünemann, Sheung Chun Ng, Kevser Fünfgeld, Trevor Huyton, Dirk Görlich
摘要

Nuclear pore complexes (NPCs) conduct nucleocytoplasmic transport through an FG domain-controlled barrier. We now explore how surface-features of a mobile species determine its NPC passage rate. Negative charges and lysines impede passage. Hydrophobic residues, certain polar residues (Cys, His), and, surprisingly, charged arginines have striking translocation-promoting effects. Favorable cation-π interactions between arginines and FG-phenylalanines may explain this apparent paradox. Application of these principles to redesign the surface of GFP resulted in variants that show a wide span of transit rates, ranging from 35-fold slower than wild-type to ∼500 times faster, with the latter outpacing even naturally occurring nuclear transport receptors (NTRs). The structure of a fast and particularly FG-specific GFPNTR variant illustrates how NTRs can expose multiple regions for binding hydrophobic FG motifs while evading non-specific aggregation. Finally, we document that even for NTR-mediated transport, the surface-properties of the "passively carried" cargo can strikingly affect the translocation rate.

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抗生素抗霉菌溶液(100×),稳定, with 10,000 units penicillin, 10 mg streptomycin and 25 μg amphotericin B per mL, 0.1 μm filtered, BioReagent, suitable for cell culture
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LookOut ® 支原体 PCR 检测试剂盒, Optimized for use with JumpStart Taq DNA Polymerase, D9307.