Polypeptide having protease activity and methods for increasing its activity thereof
The present invention relates to a polypeptide having protease activity comprising a zinc finger protease domain, a helix-turn-helix domain and a GAF domain. The core protein sequence of the protease is shown as SEQ ID NO: 1. The invention also relates to optimized reaction conditions for the protease and methods of increasing the protease activity.
1. A method for producing a composition comprising a polypeptide with increased protease activity where the polypeptide is isolated from Deinococcus radiodurans , comprising the following steps of:
Step 1, preparing a proteolytic reaction buffer of 150 mM NaCl, 20 mM Tris-HCl PH 8.0, 1.0 mM DTT, 2.0 mM MnCl 2 ;
Step 2, adding a promoter comprising the DNA damage response gene containing the predicted radiation and desiccation resistance motif (RDRM) and a substrate consisting of transcription factor DdrO (Gene ID: 1798752; NP 296294.11) from Deinococcus radiodurans (ATCC No. 139391) to the proteolytic reaction buffer and incubate for a period of time to form a substrate buffer; and
Step 3, adding the polypeptide to the substrate buffer and maintain a temperature in a range of 35-40° C.,
Wherein the polypeptide comprises a zinc peptidase-like domain containing polypeptide fragment of PR 1 (GI: 158052041) consisting of SEQ ID No: 1.
2. The method of claim 1 , wherein the specific cleavage recognition sequence of said polypeptide is SEQ ID No: 2 (ELXGXR, where X is any kind of essential amino acids), and the cleavage site is between the second and the third amino acid residue.
3. The method of claim 1 , wherein the specific cleavage recognition sequence is one of SEQ ID No: 3-8.
4. The method of claim 1 , wherein gene promoter regions containing the RDRM site include dr0070, dr0099, dra0151, dr0219, dr0326, dra0346, dr0423, dr0596, dr0906, dr1039, dr1143, dr1289, dr1696, dr1771, dr1775, dr1913, dr1921, dr2256, dr2275, dr2336, and dr2574.
5. The method of claim 1 , wherein the binding reaction between DdrO and the promoter regions containing the RDRM site is carried out in the buffer containing 150 mM NaCl, 20 mM Tris-HCl 8.0, 5 mM MgCl2 at 30° C.
6. The method of claim 1 , wherein the minimum sequence for DdrO to bind to the promoter regions of the DNA damage response and repair gene is the RDRM site.