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Feb 9, 2025 -
Investigating the molybdenum nitrogenase mechanistic cycle using spectroelectrochemistry
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MD5: ba818817edd206a99588bf6ca72008d5
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Feb 9, 2025 -
Investigating the molybdenum nitrogenase mechanistic cycle using spectroelectrochemistry
Plain Text - 81.3 KB -
MD5: ab5cab31c913c3b44e0752f6c39dac77
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Feb 9, 2025 -
Investigating the molybdenum nitrogenase mechanistic cycle using spectroelectrochemistry
Plain Text - 600.2 KB -
MD5: cc440f887d38d75c9f18b1399c21aebe
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Feb 9, 2025 -
Investigating the molybdenum nitrogenase mechanistic cycle using spectroelectrochemistry
Plain Text - 268.9 KB -
MD5: 4b6dcfe6438e315678580f4e1882daf7
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Feb 9, 2025 -
Investigating the molybdenum nitrogenase mechanistic cycle using spectroelectrochemistry
Co-Ordinate Animation - 8.2 KB -
MD5: 3cb0a27a43832f698aba3fcec18eae29
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Feb 9, 2025 -
Investigating the molybdenum nitrogenase mechanistic cycle using spectroelectrochemistry
Co-Ordinate Animation - 8.2 KB -
MD5: 9c1da670f2b909f9dfbd0b5ecc892b97
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Feb 7, 2025
Schwabe, Johannes; Søgaard-Andersen, Lotte, 2025, "AlphaFold2 structural models of EcpK, EcpK/EpsV, octameric EcpK/EpsV483-507 in Myxococcus xanthus & HfsA/HfsB in Caulobacter crescentus", https://doi.org/10.17617/3.RIJIIS, Edmond, V1
AlphaFold2 structural models of EcpK, EcpK/EpsV, octameric EcpK/EpsV483-507 in Myxococcus xanthus & HfsA/HfsB in Caulobacter crescentus. For each prediction, the dataset includes five structural models along with the corresponding files for ranking scores, modeling configuration, and sequence alignment. |
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MD5: b0a5c2093346a1c28d8f35401458c582
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JSON - 1.0 KB -
MD5: 3777e66cc4d2179c0b5eecf0f50803b7
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JSON - 1.0 KB -
MD5: c199c5b545fcbf095056f53a5115640e
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