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作者:Clery, Daniel
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作者:Cohen, Jon
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作者:Carver, Alexander; Yu, Tai-Yuan; Yates, Luke A.; White, Travis; Wang, Raymond; Lister, Katie; Jasin, Maria; Zhang, Xiaodong
作者单位:Francis Crick Institute; Imperial College London; Memorial Sloan Kettering Cancer Center
摘要:Maintaining genome integrity is an essential and challenging process. RAD51 recombinase, the central component of several crucial processes in repairing DNA and protecting genome integrity, forms filaments on DNA, which are tightly regulated. One of these RAD51 regulators is FIGNL1 (fidgetin-like 1), which prevents RAD51 genotoxic chromatin association in normal cells and persistent RAD51 foci upon DNA damage. The cryogenic electron microscopy-imaged structure of FIGNL1 in complex with RAD51 r...
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作者:Wai, Jonathan
作者单位:University of Arkansas System; University of Arkansas Fayetteville
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作者:Thorp, H. Holden
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作者:[Anonymous]
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作者:Mulder, Tara
作者单位:University of Wisconsin System; University of Wisconsin Madison
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作者:Yan, Yong-Qiang; Cha, Wen-Hao; Liu, Sida; Ma, Yan; Luan, Jun-Hua; Rao, Ziyuan; Liu, Chang; Shan, Zhi-Wei; Lu, Jian; Wu, Ge
作者单位:Xi'an Jiaotong University; Xi'an Jiaotong University; RWTH Aachen University; Delft University of Technology; City University of Hong Kong; Shanghai Jiao Tong University; City University of Hong Kong
摘要:Higher strength and higher ductility are desirable for structural materials. However, ultrastrong alloys inevitably show decreased strain-hardening capacity, limiting their uniform elongation. We present a supranano (<10 nanometers) and short-range ordering design for grain interiors and grain boundary regions, respectively, in fine-grained alloys based on vanadium, cobalt, and nickel, with additions of tungsten, copper, aluminum, and boron. The pronounced grain boundary-related strengthening ...
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作者:Leshner, Alan I.; Thorp, H. Holden
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作者:Sarfatis, Ari; Wang, Yuanyou; Twumasi-Ankrah, Nana; Moffitt, Jeffrey R.
作者单位:Harvard University; Harvard University Medical Affiliates; Boston Children's Hospital; Program in Cellular & Molecular Medicine (PCMM); Harvard University; Harvard Medical School; Harvard University; Massachusetts Institute of Technology (MIT); Broad Institute
摘要:Single-cell decisions made in complex environments underlie many bacterial phenomena. Image-based transcriptomics approaches offer an avenue to study such behaviors, yet these approaches have been hindered by the massive density of bacterial messenger RNA. To overcome this challenge, we combined 1000-fold volumetric expansion with multiplexed error-robust fluorescence in situ hybridization (MERFISH) to create bacterial-MERFISH. This method enables high-throughput, spatially resolved profiling ...