Reproducing the natural evolution of protein structural features with the selectively infective phage (SIP) technology. The kink in the first strand of antibody kappa domains.
نویسندگان
چکیده
The beta-sandwich structure of immunoglobulin variable domains is characterized by a typical kink in the first strand, which allows the first part of the strand to hydrogen bond to the outer beta-sheet (away from the VH-VL interface) and the second part to the inner beta-sheet. This kink differs in length and sequence between the Vkappa, Vlambda and VH domains and yet is involved in several almost perfectly conserved interactions with framework residues. We have used the selectively infective phage (SIP) system to select the optimal kink region from several defined libraries, using an anti-hemagglutinin single-chain Fv (scFv) fragment as a model system. Both for the kink with the Vkappa domain length and that with the Vlambda length, a sequence distribution was selected that coincides remarkably well with the sequence distribution of natural antibodies. The selected scFv fragments were purified and characterized, and thermodynamic stability was found to be the prime factor responsible for selection. These data show that the SIP technology can be used for optimizing protein structural features by evolutionary approaches.
منابع مشابه
Selectively-infective phage (SIP): a mechanistic dissection of a novel in vivo selection for protein-ligand interactions.
Selectively-infective phage (SIP) is a novel methodology for the in vivo selection of interacting protein-ligand pairs. It consists of two components, (1) a phage particle made non-infective by replacing its N-terminal domains of geneIII protein (gIIIp) with a ligand-binding protein, and (2) an "adapter" molecule in which the ligand is linked to those N-terminal domains of gIIIp which are missi...
متن کاملSelectively infective phage (SIP) technology: scope and limitations.
We review here the selectively infective phage (SIP) technology, a powerful tool for the rapid selection of protein-ligand and peptide-ligand pairs with very high affinities. SIP is highly suitable for discriminating between molecules with subtle stability and folding differences. We discuss the preferred types of applications for this technology and some pitfalls inherent in the in vivo SIP me...
متن کاملNon-repetitive single-chain Fv linkers selected by selectively infective phage (SIP) technology.
By using the selectively infective phage (SIP) technology, we selected non-repetitive linkers for a single-chain Fv fragment to have genes more robust against deletions in PCR-based gene assembly and directed evolution experiments than is the case for the classical (Gly4Ser)3 linker. We designed linkers encoding turns at both ends and random positions in the middle where glycines and polar and ...
متن کاملانتخاب اختصاصی فاژهای حاوی قطعه آنتیبادی به کمک پروتئین A در تکنیک کتابخانه آنتیبادی فاژ
Background and purpose: Antibody phage display library is a powerful in vitro technology for production of recombinant antibody fragments against a wide variety of antigens. However, the presence of insert-free clones in the phage libraries limited the specific enrichment of antibody fragments in many studies. The aim of this study was to protein A-aided recovery of insert-containing phages in ...
متن کاملConstruction of Human Recombinant ScFv Phage Libraries from the Advanced Stages of Breast Carcinoma Patients
Advances in the field of antibody engineering, and the emergence of powerful screening technology such as filamentous phage display allowed to generate fully human antibodies with high affinities against virtually any desired target from immune or even naIve human repertoires. As a result, the immunogenicity problems related to applications of nonhuman based recombinant antibodies as therapeuti...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- Journal of molecular biology
دوره 283 2 شماره
صفحات -
تاریخ انتشار 1998