| Literature DB >> 27372107 |
Yuwei Li1, Xiaolan Yang1, Deqiang Wang1, Xiaolei Hu1, Mei Yuan1, Jun Pu1, Chang-Guo Zhan2, Zhaoyong Yang3, Fei Liao4.
Abstract
To obtain the label enzyme for enzyme-linked-immunoabsorbent-assay of two components each time in one well with conventional microplate readers, molecular engineering of Pseudomonas aeruginosa arylsulfatase (PAAS) is needed. To compare thermostability of PAAS/mutants of limited purity, effects of buffers on the half-activity time (t 0.5) at 37 °C were tested. At pH 7.4, PAAS showed non-exponential decreases of activity, with the apparent t 0.5 of ~6.0 days in 50 mM HEPES, but ~42 days in 10 mM sodium borate with >85 % activity after 15 days; protein concentrations in both buffers decreased at slower rates after there were significant decreases of activities. Additionally, the apparent t 0.5 of PAAS was ~14 days in 50 mM Tris-HCl, and ~21 days in 10 mM sodium phosphate. By sodium dodecyl-polyacrylamide gel electrophoresis, the purified PAAS gave single polypeptide; after storage for 14 days at 37 °C, there were many soluble and insoluble fragmented polypeptides in the HEPES buffer, but just one principal insoluble while negligible soluble fragmented polypeptides in the borate buffer. Of tested mutants in the neutral borate buffer, rates for activity decreases and polypeptide degradation were slower than in the HEPES buffer. Hence, dilute neutral borate buffers were favorable for examining thermostability of PAAS/mutants.Entities:
Keywords: Borate; Contaminated proteases; Degradation; Pseudomonas aeruginosa arylsulfatase; Thermostability
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Year: 2016 PMID: 27372107 DOI: 10.1007/s10930-016-9671-0
Source DB: PubMed Journal: Protein J ISSN: 1572-3887 Impact factor: 2.371