| Literature DB >> 26406327 |
Xixing Qu, Xiang Pu, Fei Chen, Yun Yang, Lixia Yang, Guolin Zhang, Yinggang Luo.
Abstract
Entities:
Year: 2015 PMID: 26406327 PMCID: PMC4583399 DOI: 10.1371/journal.pone.0139647
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Fig 7Amino acid residues alignment of CamCPR, caa_locus_6894, caa_locus_12198, and caa_locus_112450 using Clustal Omega multiple aligment tool.
The identical amino acid residues between CamCPR and caa_locus_6894 were highlighted in red, between CamCPR and caa_locus_12198 were in green, and between CamCPR and caa_locus_112450 were in blue.
Fig 8Enzymatic digestion and chemical degradation of tCamCPR.
The predicted cleavage sites of tCamCPR (a) and the detected peptide fragments by SDS-PAGE analysis (b). T, thrombin; H, Hydroxylamine; M, protein ruler; Lane 1, tCamCPR; Lane 2, thrombin; Enzyme digestion products of tCamCPR with 1 U / 50 μL (Lane 3) and 2 U / 50 μL (Lane 4) of thrombin were used [37]; Lanes 5 and 6, chemical degradation products of tCamCPR by hydroxylamine [38].