2007
DOI: 10.1002/cbic.200600408
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Solid‐State NMR of Matrix Metalloproteinase 12: An Approach Complementary to Solution NMR

Abstract: Data transfer. The solid‐state proton‐driven spin diffusion (PDSD) and J‐decoupled PDSD NMR spectra of the microcrystalline catalytic domain of matrix metalloproteinase 12 (MMP‐12, 17 kDa) have been recorded. It is shown that such spectra can be largely assigned in a few days by using the available liquid‐state assignment and validated with an independent sequential assignment based on 3D NCACX and NCOCX PDSD experiments. This demonstrates how quickly the liquid‐state assignment of comparably large protein can… Show more

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Cited by 42 publications
(30 citation statements)
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“…The different 3D crystals of ArtP were directly used to record 13 C, 13 C PDSD correlation spectra. In all spectra, narrow lines comparable to other crystalline protein preparations [48][49][50] were observed. The expected two tyrosine and ten proline signal sets were easily identified in the spectra of ArtP (Table 2).…”
Section: Resultsmentioning
confidence: 77%
“…The different 3D crystals of ArtP were directly used to record 13 C, 13 C PDSD correlation spectra. In all spectra, narrow lines comparable to other crystalline protein preparations [48][49][50] were observed. The expected two tyrosine and ten proline signal sets were easily identified in the spectra of ArtP (Table 2).…”
Section: Resultsmentioning
confidence: 77%
“…The 13 C-13 C PDSD spectra obtained with the 2 dilution schemes (diluted CoMMP-12 and diluted ZnMMP-12 samples) were recorded, assigned, and compared with those of fully enriched CoMMP-12 and ZnMMP-12 (38,45), respectively. Representative portions of these spectra are shown in Fig.…”
Section: Resultsmentioning
confidence: 99%
“…[32,33] Proton chemical-shift evolution can of course be implemented in the indirect dimension of 13 C direct-detection NMR experiments, as proposed for the study of proteins [34][35][36][37] and nucleic acids. [38,39] Finally, the development of strategies to overcome problems related to 13 C detection in solution, such as homonuclear decoupling, [10,22,40] which have initially been stimulated by experiments developed for solid-state applications, [41,42] as well as common and complementary aspects of 13 C detection in solution and in the solid state, [13,17,[43][44][45] are now creating a basis for cross-fertilization between these two areas of biomolecular NMR [46] that can be eventually combined to tackle challenging systems. [43] The main focus of the experiments developed so far has been the identification of otherwise undetectable NMR resonances and sequence-specific assignment of the polypeptidic chain.…”
Section: Introductionmentioning
confidence: 98%