Logo: to the web site of Uppsala University

uu.sePublications from Uppsala University
Change search
Link to record
Permanent link

Direct link
Stenberg, Gun
Publications (2 of 2) Show all publications
Fekry, M., Stenberg, G., Dobritzsch, D. & Danielson, U. H. (2024). Production of stable and pure ZC3H11A-An extensively disordered RNA binding protein. Protein Expression and Purification, 222, Article ID 106542.
Open this publication in new window or tab >>Production of stable and pure ZC3H11A-An extensively disordered RNA binding protein
2024 (English)In: Protein Expression and Purification, ISSN 1046-5928, E-ISSN 1096-0279, Vol. 222, article id 106542Article in journal (Refereed) Published
Abstract [en]

Human ZC3H11A is an RNA-binding zinc finger protein involved in mRNA export and required for the efficient growth of human nuclear replicating viruses. Its biochemical properties are largely unknown so our goal has been to produce the protein in a pure and stable form suitable for its characterization. This has been challenging since the protein is large (810 amino acids) and with only the N-terminal zinc finger domain (amino acids 1-86) being well structured, the remainder is intrinsically disordered. Our production strategies have encompassed recombinant expression of full-length, truncated and mutated ZC3H11A variants with varying purification tags and fusion proteins in several expression systems, with or without co-expression of chaperones and putative interaction partners. A range of purification schemes have been explored. Initially, only truncated ZC3H11A encompassing the zinc finger domain could successfully be produced in a stable form. It required recombinant expression in insect cells since expression in E. coli gave a protein that aggregated. To reduce problematic nucleic acid contaminations, Cys8, located in one of the zinc fingers, was substituted by Ala and Ser. Interestingly, this did not affect nucleic acid binding, but the full-length protein was stabilised while the truncated version was insoluble. Ultimately, we discovered that when using alkaline buffers (pH 9) for purification, full-length ZC3H11A expressed in Sf9 insect cells was obtained in a stable and >90 % pure form, and as a mixture of monomers, dimers, tetramers and hexamers. Many of the challenges experienced are consistent with its predicted structure and unusual charge distribution.

Place, publisher, year, edition, pages
Elsevier, 2024
Keywords
Zinc finger, RNA binding proteins, Insect cell expression, mRNA export, ZC3H11A
National Category
Biochemistry Molecular Biology
Identifiers
urn:nbn:se:uu:diva-535387 (URN)10.1016/j.pep.2024.106542 (DOI)001266753100001 ()38969281 (PubMedID)
Funder
Knut and Alice Wallenberg Foundation, 2017.0071
Available from: 2024-07-31 Created: 2024-07-31 Last updated: 2025-02-20Bibliographically approved
Poliakov, A., Hubatsch, I., Shuman, C. F., Stenberg, G. & Danielson, U. H. (2002). Expression and purification of recombinant full-length NS3 protease-helicase from a new variant of Hepatitis C virus. Protein Expression and Purification, 25(3), 363-371
Open this publication in new window or tab >>Expression and purification of recombinant full-length NS3 protease-helicase from a new variant of Hepatitis C virus
Show others...
2002 (English)In: Protein Expression and Purification, ISSN 1046-5928, E-ISSN 1096-0279, Vol. 25, no 3, p. 363-371Article in journal (Refereed) Published
Abstract [en]

Viral mRNA extracted from the serum of a patient infected with HCV strain I a was used for cloning, expression, and purification of full-length Hepatitis C NS3 protein. Sequencing of the protease gene identified the virus to be a new variant closely related to strain H77, differing in 15 out of 631 amino acids in the NS3 protein, none of which were predicted to be directly involved in catalysis, binding of substrate, or cofactor. A pBAD expression system was used to express the enzyme with an N-terminal tag in Escherichia coli. Purification from the soluble cellular fraction was achieved by Ni2(+)-IMAC and PolyU Sepharose affinity chromatography. The dependence of the proteolytic activity of the full-length NS3 protein on ionic strength, glycerol concentration, and a peptide corresponding to the activating region of NS4A was analyzed and used to design an activity assay that is suitable for inhibition studies. The kinetic constants (k(cat) and K-M) for catalysis and the inhibitory potencies (IC50 and K-i) of five product-based hexapeptide inhibitors were comparable to those reported for the truncated NS3 protein. Detailed kinetic and inhibition studies using this variant of full-length NS3 can increase the understanding of the enzymatic characteristics of NS3, reveal the importance of the substituted amino acids and the significance of the genetic variability for design of effective inhibitors of the virus, and is thus of relevance for drug discovery.

National Category
Natural Sciences
Identifiers
urn:nbn:se:uu:diva-82149 (URN)10.1016/S1046-5928(02)00042-6 (DOI)000177967600001 ()12182815 (PubMedID)
Available from: 2008-06-15 Created: 2008-06-15 Last updated: 2017-12-14Bibliographically approved
Organisations

Search in DiVA

Show all publications