N-terminal chemical protein labeling using the naturally split GOS-TerL intein

被引:16
作者
Bachmann, Anne-Lena [1 ]
Mootz, Henning D. [1 ]
机构
[1] Univ Munster, Inst Biochem, Wilhelm Klemm Str 2, D-48149 Munster, Germany
关键词
cysteine; protein semi-synthesis; ligation; intein; protein splicing; fluorophore; nanobody; bioconjugation; NPU DNAE INTEIN; ADENOSINE-TRIPHOSPHATASE; SYNTHETIC PEPTIDE; HIGHLY EFFICIENT; LIVING CELLS; IN-VITRO; LIGATION; GENE; TAG; SEMISYNTHESIS;
D O I
10.1002/psc.2996
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Chemoselective and regioselective chemical protein labeling is of great importance, yet no current technique is sufficiently general and simple to perform. Protein trans-splicing by split inteins can be used to ligate short tags with chemical labels to either the N or the C terminus of a protein. The CysTag approach exploits split intein fragments without a cysteine fused with such a short tag containing a single cysteine that is easily amenable to selective modification using classical cysteine bioconjugation. Labeling of the protein of interest is achieved through transfer of the pre-labeled tag by protein trans-splicing. This protocol keeps other cysteines unmodified. While split inteins for C-terminal CysTag labeling were previously reported, no high-yielding and naturally split intein for N-terminal labeling has been available. In this work, the recently discovered GOS-TerL intein was explored as the only known naturally split intein that both lacks a cysteine in its N-terminal fragment and is active under ambient conditions. Thioredoxin as a model protein and a camelid nanobody were labeled with a synthetic fluorophore by transferring the pre-labeling CysTag in the protein trans-splicing reaction with yields of about 50 to 90%. The short N-terminal intein fragment was also chemically synthesized with a tag to enable protein labeling by semi-synthetic protein trans-splicing. Our results expand the scope of the CysTag labeling strategy, which achieves selective chemical modification without the requirement for sophisticated biorthogonal functional groups and rather builds on the plethora of commercially available reagents directed at the thiol side chain of cysteine. Copyright (c) 2017 European Peptide Society and John Wiley & Sons, Ltd.
引用
收藏
页码:624 / 630
页数:7
相关论文
共 30 条
[1]   Novel Split Intein for trans-Splicing Synthetic Peptide onto C Terminus of Protein [J].
Appleby, Julia H. ;
Zhou, Kaisong ;
Volkmann, Gerrit ;
Liu, Xiang-Qin .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2009, 284 (10) :6194-6199
[2]   Highly Efficient and More General cis- and trans-Splicing Inteins through Sequential Directed Evolution [J].
Appleby-Tagoe, Julia H. ;
Thiel, Ilka V. ;
Wang, Yi ;
Wang, Yanfei ;
Mootz, Henning D. ;
Liu, Xiang-Qin .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2011, 286 (39) :34440-34447
[3]   An Unprecedented Combination of Serine and Cysteine Nucleophiles in a Split Intein with an Atypical Split Site [J].
Bachmann, Anne-Lena ;
Mootz, Henning D. .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2015, 290 (48) :28792-28804
[4]   Expanding the Scope of Protein Trans-Splicing to Fragment Ligation of an Integral Membrane Protein: Towards Modulation of Porin-Based Ion Channels by Chemical Modification [J].
Brenzel, Steffen ;
Cebi, Menekse ;
Reiss, Philipp ;
Koert, Ulrich ;
Mootz, Henning D. .
CHEMBIOCHEM, 2009, 10 (06) :983-986
[5]   Protein trans-splicing and characterization of a split family B-type DNA polymerase from the hyperthermophilic archaeal parasite Nanoarchaeum equitans [J].
Choi, JJ ;
Nam, KH ;
Min, B ;
Kim, SJ ;
Söll, D ;
Kwon, ST .
JOURNAL OF MOLECULAR BIOLOGY, 2006, 356 (05) :1093-1106
[6]   SYNTHESIS OF PROTEINS BY NATIVE CHEMICAL LIGATION [J].
DAWSON, PE ;
MUIR, TW ;
CLARKLEWIS, I ;
KENT, SBH .
SCIENCE, 1994, 266 (5186) :776-779
[7]   Protein semi-synthesis in living cells [J].
Giriat, I ;
Muir, TW .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2003, 125 (24) :7180-7181
[8]  
Hermanson GT, 2008, BIOCONJUGATE TECHNIQUES, 2ND EDITION, P1, DOI 10.1016/B978-0-12-370501-3.00001-1
[9]  
HIRATA R, 1990, J BIOL CHEM, V265, P6726
[10]   PROTEIN SPLICING CONVERTS THE YEAST TFP1 GENE-PRODUCT TO THE 69-KD SUBUNIT OF THE VACUOLAR H+-ADENOSINE TRIPHOSPHATASE [J].
KANE, PM ;
YAMASHIRO, CT ;
WOLCZYK, DF ;
NEFF, N ;
GOEBL, M ;
STEVENS, TH .
SCIENCE, 1990, 250 (4981) :651-657