| Literature DB >> 34056277 |
Philippa M Warren1,2,3, James W Fawcett1,4, Jessica C F Kwok1,4,5.
Abstract
Chondroitin sulfate proteoglycans inhibit regeneration, neuroprotection, and plasticity following spinal cord injury. The development of a second-generation chondroitinase ABC enzyme, capable of being secreted from mammalian cells (mChABC), has facilitated the functional recovery of animals following severe spinal trauma. The genetically modified enzyme has been shown to efficiently break down the inhibitory extracellular matrix surrounding cells at the site of injury, while facilitating cellular integration and axonal growth. However, the activity profile of the enzyme in relation to the original bacterial chondroitinase (bChABC) has not been determined. Here, we characterize the activity profile of mChABC and compare it to bChABC, both enzymes having been maintained under physiologically relevant conditions for the duration of the experiment. We show that this genetically modified enzyme can be secreted reliably and robustly in high yields from a mammalian cell line. The modifications made to the cDNA of the enzyme have not altered the functional activity of mChABC compared to bChABC, ensuring that it has optimal activity on chondroitin sulfate-A, with an optimal pH at 8.0 and temperature at 37 °C. However, mChABC shows superior thermostability compared to bChABC, ensuring that the recombinant enzyme operates with enhanced activity over a variety of physiologically relevant substrates and temperatures compared to the widely used bacterial alternative without substantially altering its kinetic output. The determination that mChABC can function with greater robustness under physiological conditions than bChABC is an important step in the further development of this auspicious treatment strategy toward a clinical application.Entities:
Year: 2021 PMID: 34056277 PMCID: PMC8153898 DOI: 10.1021/acsomega.0c06262
Source DB: PubMed Journal: ACS Omega ISSN: 2470-1343
Figure 1Amount and stability of active mChABC secreted by HEK293 cells. (A) Average amount of active mChABC secreted from HEK293 over a 24 h period for 2 consecutive days following transfection (N = 3 from independent cell batches). (B) Stability of 0.0001 μmol/min mChABC over a period of 6 days at 37 °C (N = 3 from independent cell batches). For both panels, data show means ± SD.
Activity of Commercial bChABC and mChABC Acting on GAG Substratesa
| substrate | average MW (kDa) | control (μmol min–1 mg–1) | mChABC (μmol min–1 mg–1) | bChABC (μmol min–1 mg–1) |
|---|---|---|---|---|
| CS-A from bovine trachea | 12 | 0.0558 ± 0.000185 | 4.69 ± 0.00614 | 3.35 ± 0.00596 |
| DS from porcine intestinal mucosa | 16 | 0.0264 ± 0.000573 | 2.57 ± 0.0086 | 2.23 ± 0.00167 |
| CS-C from shark cartilage | 35 | 0.0147 ± 0.00019 | 3.57 ± 0.00436 | 2.95 ± 0.00334 |
| Hyaluronan | 215 | 0.0117 ± 0.000173 | 0.444 ± 0.00131 | 0.429 ± 0.0014 |
Enzyme activity measured as U/mg of protein (μmol min–1 mg–1). Values show means ± SD and shown to three significant figures. The experiment was conducted at pH 8 and 37 °C (N = 3 for each condition from independent cell batches). Sigma bChABC was preincubated at 37 °C for 48 h prior to assessment. MW = molecular weight.
Figure 2pH specificity of mChABC compared to bChABC. Effect of pH on enzyme activity when incubated with (A) CS-A and (B) hyaluronic acid (HA). For both panels, data show means ± SD and N = 3 (from independent cell batches).
Figure 3Temperature specificity of mChABC compared to bChABC. Effect of temperature on enzyme activity using CS-A at pH 8 over (A) a temperature range, and preincubation of the enzyme at (B) 37 °C and (C) 50 °C to assess thermostability. For all panels, data show means ± SD and N = 3 (from independent cell batches).
Kinetic Analysis of mChABC and Commercial bChABCa
| enzyme | |||
|---|---|---|---|
| no enzyme control | –0.0384 ± 0.147 | 0.163 ± 0.0372 | –4.24 |
| mChABC | 0.527 ± 0.0523 | 46.1 ± 0.874 | 84.5 |
| bChABC (Sigma) | 0.373 ± 0.0318 | 37.1 ± 0.544 | 99.4 |
Values show means ± SD. Km and kcat are shown to three significant figures and kcat/Km to 1 decimal place. N = 8 for each condition (from independent cell batches).