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1.
J Comput Chem ; 2024 Aug 19.
Article in English | MEDLINE | ID: mdl-39158951

ABSTRACT

Orphan nuclear estrogen-related receptor γ (ERRγ) has been recognized as a potential therapeutic target for cancer, inflammation and metabolic disorder. The ERRγ contains a regulatory AF2 helical tail linked C-terminally to its ligand-binding domain (LBD), which is a self-binding peptide (SBP) and serves as molecular switch to dynamically regulate the receptor alternation between active and inactive states by binding to and unbinding from the AF2-binding site on ERRγ LBD surface, respectively. Traditional ERRγ modulators are all small-molecule chemical ligands that can be classified into agonists and inverse agonists in terms of their action mechanism; the agonists stabilize the AF2 in ABS site with an agonist conformation, while the inverse agonists lock the AF2 out of the site to largely abolish ERRγ transcriptional activity. Here, a class of ERRγ peptidic antagonists was described to compete with native AF2 for the ABS site, thus blocking the active state of AF2 binding to ERRγ LBD domain. Self-inhibitory peptide was derived from the SBP-covering AF2 region and we expected it can rebind potently to the ABS site by reducing its intrinsic disorder and entropy cost upon the rebinding. Hydrocarbon stapling was employed to do so, which employed an all-hydrocarbon bridge across the [i, i + 4]-anchor residue pair in the N-terminal, middle or C-terminal region of the self-inhibitory peptide. As might be expected, it is revealed that the stapled peptides are good binders of ERRγ LBD domain and can effectively compete with the native AF2 helical tail for ERRγ ABS site, which exhibit a basically similar binding mode with AF2 to the site and form diverse noncovalent interactions with the site, thus conferring stability and specificity to the domain-peptide complexes.

2.
Chembiochem ; 25(7): e202300747, 2024 Apr 02.
Article in English | MEDLINE | ID: mdl-38191871

ABSTRACT

Peptide side chain stapling has been proven to be an effective strategy for fine-tuning peptide properties. This innovative approach leads to the creation of stapled peptides characterized by stabilized α-helical conformations, enhanced protein-binding affinity, improved cell permeability, superior enzymatic stability, and numerous other advantages. Extensive research has explored the impact of various stapling bridges on the properties of these peptides, with limited investigation into the influence of bridge chirality, until very recently. In this concise review, we provide a brief overview of the current state of knowledge regarding the stereochemistry within the bridges of stapled peptides, offering insights into the potential applications of chiral bridges in the design and development of stapled peptides.


Subject(s)
Peptides , Peptides/chemistry , Protein Binding , Protein Conformation, alpha-Helical
3.
Chemistry ; 30(19): e202304270, 2024 Apr 02.
Article in English | MEDLINE | ID: mdl-38285527

ABSTRACT

With peptides increasingly favored as drugs, natural product motifs, namely the tryptathionine staple, found in amatoxins and phallotoxins, and the 2,2'-bis-indole found in staurosporine represent unexplored staples for unnatural peptide macrocycles. We disclose the efficient condensation of a 5-hydroxypyrroloindoline with either a cysteine-thiol or a tryptophan-indole to form a tryptathionine or 2-2'-bis-indole staple. Judicious use of protecting groups provides for chemoselective stapling using α-MSH, which provides a basis for investigating both chemoselectivity and affinity. Both classes of stapled peptides show nanomolar Ki's, with one showing a sub-nanomolar Ki value.


Subject(s)
Peptides, Cyclic , alpha-MSH/analogs & derivatives , Cysteine , Indoles
4.
Bioorg Med Chem Lett ; 112: 129915, 2024 Aug 09.
Article in English | MEDLINE | ID: mdl-39127242

ABSTRACT

Many reports have shown that stabilization of secondary structure by stapling functional peptides enhances the intracellular bioactivity. However, no report has discussed the correlation between stabilization and biological activity based on the configuration of amino acid residues used as anchors for stapling. To clarify this, we investigated the helix content and apoptotic efficiency of an apoptosis-inducing peptide, Bim, and four stapled Bim peptides containing stapling-related Cys residues introduced with different configurations within the sequence. The results demonstrated that the configuration of Cys residues in stapled Bim peptides affected the secondary structure and intracellular activity of the peptides, and furthermore, there was a correlation between these latter two variables.

5.
J Comput Aided Mol Des ; 38(1): 31, 2024 Aug 23.
Article in English | MEDLINE | ID: mdl-39177727

ABSTRACT

Human Hippo signaling pathway is an evolutionarily conserved regulator network that controls organ development and has been implicated in various cancers. Transcriptional enhanced associate domain-4 (TEAD4) is the final nuclear effector of Hippo pathway, which is activated by Yes-associated protein (YAP) through binding to two separated YAP regions of α1-helix and Ω-loop. Previous efforts have all been addressed on deriving peptide inhibitors from the YAP to target TEAD4. Instead, we herein attempted to rationally design a so-called 'YAP helixα1-trap' based on the TEAD4 to target YAP by using dynamics simulation and energetics analysis as well as experimental assays at molecular and cellular levels. The trap represents a native double-stranded helical hairpin covering a specific YAP-binding site on TEAD4 surface, which is expected to form a three-helix bundle with the α1-helical region of YAP, thus competitively disrupting TEAD4-YAP interaction. The hairpin was further stapled by a disulfide bridge across its two helical arms. Circular dichroism characterized that the stapling can effectively constrain the trap into a native-like structured conformation in free state, thus largely minimizing the entropy penalty upon its binding to YAP. Affinity assays revealed that the stapling can considerably improve the trap binding potency to YAP α1-helix by up to 8.5-fold at molecular level, which also exhibited a good tumor-suppressing effect at cellular level if fused with TAT cell permeation sequence. In this respect, it is considered that the YAP helixα1-trap-mediated blockade of Hippo pathway may be a new and promising therapeutic strategy against cancers.


Subject(s)
Adaptor Proteins, Signal Transducing , Antineoplastic Agents , DNA-Binding Proteins , Molecular Dynamics Simulation , Muscle Proteins , TEA Domain Transcription Factors , Transcription Factors , YAP-Signaling Proteins , Transcription Factors/chemistry , Transcription Factors/metabolism , Transcription Factors/antagonists & inhibitors , Humans , DNA-Binding Proteins/chemistry , DNA-Binding Proteins/metabolism , Antineoplastic Agents/pharmacology , Antineoplastic Agents/chemistry , Muscle Proteins/chemistry , Muscle Proteins/metabolism , Adaptor Proteins, Signal Transducing/chemistry , Adaptor Proteins, Signal Transducing/metabolism , Disulfides/chemistry , Disulfides/pharmacology , Protein Binding , Binding Sites , Cell Line, Tumor , Computer-Aided Design , Drug Design
6.
Bioorg Med Chem ; 111: 117871, 2024 Sep 01.
Article in English | MEDLINE | ID: mdl-39133977

ABSTRACT

Cell-penetrating peptides (CPPs) are crucial for delivering macromolecules such as nucleic acids into cells. This study investigates the effectiveness of dual-modified penetratin peptides, focusing on the impact of stapling structures and an endosomal escape domain (EED) on enhancing intracellular uptake. Some CPPs were synthesized with an EED at either the N- or C-terminus and stapling structures, and then complexed with plasmid DNA (pDNA) to evaluate their cellular uptake. Results revealed that the combination of stapling and an EED significantly improved delivery efficiency, primarily via macropinocytosis and clathrin-mediated endocytosis. These findings underscore the importance of optimizing CPP sequences for effective nucleic acid delivery systems.


Subject(s)
Cell-Penetrating Peptides , Endosomes , Cell-Penetrating Peptides/chemistry , Cell-Penetrating Peptides/chemical synthesis , Cell-Penetrating Peptides/pharmacology , Humans , Endosomes/metabolism , DNA/chemistry , Plasmids , HeLa Cells
7.
J Pept Sci ; 30(4): e3551, 2024 Apr.
Article in English | MEDLINE | ID: mdl-37926859

ABSTRACT

Antibiotic resistance is an escalating global health threat. Due to their diverse mechanisms of action and evasion of traditional resistance mechanisms, peptides hold promise as future antibiotics. Their ability to disrupt bacterial membranes presents a potential strategy to combat drug-resistant infections and address the increasing need for effective antimicrobial treatments. Amphipathic α-helical peptides possess a distinctive molecular structure with both charged/hydrophilic and hydrophobic regions that interact with the bacterial cell membrane, disrupting its structural integrity. The α-helical amphipathic peptide aurein 1.2, secreted by the Australian frog Litoria aurea, is one of the shortest known antimicrobial peptides, spanning only 13 amino acids. The primary objective of this study was to investigate stapled and photoswitchable modifications of short helical peptides employing biocompatible chemistry, utilising aurein 1.2 as a model system. We developed various stapled versions of aurein 1.2 using biocompatible conjugation chemistry between dicyanopyridine and 1,2-aminothiols. While the commonly employed stapling pattern for longer staples is i, i + 7, we observed superior helicity in peptides stapled at positions i, i + 8. Molecular dynamics simulations confirmed both stapling patterns to support an α-helical peptide conformation. Additionally, we utilised a cysteine-selective photosensitive staple, perfluoro azobenzene, to explore photoswitchable variants of aurein 1.2. A double-cysteine variant stapled at i, i + 7 indeed exhibited a change in overall helicity induced by light. We further demonstrated the applicability of this staple to attach to cysteine residues in i, i + 7 positions of a helix in a model protein. While some of the stapled variants displayed substantial increase in helicity, minimal inhibitory concentration assays revealed that none of the stapled aurein 1.2 variants exhibited increased antimicrobial activity compared to the wildtype.


Subject(s)
Anti-Infective Agents , Antimicrobial Peptides , Animals , Amino Acid Sequence , Cysteine , Protein Conformation , Australia , Peptides/pharmacology , Peptides/chemistry , Anura , Bacteria
8.
J Pept Sci ; 30(6): e3566, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38271799

ABSTRACT

Figainin 2 is a cationic, hydrophobic, α-helical host-defense peptide with 28 residues, which was isolated from the skin secretions of the Chaco tree frog. It shows potent inhibitory activity against both Gram-negative and Gram-positive pathogens and has garnered considerable interest in developing novel classes of natural antibacterial agents. However, as a linear peptide, conformational flexibility and poor proteolytic stability hindered its development as antibacterial agent. To alleviate its susceptibility to proteolytic degradation and improve its antibacterial activity, a series of hydrocarbon-stable analogs of Figainin 2 were synthesized and evaluated for their secondary structure, protease stability, antimicrobial, and hemolytic activities. Among them, F2-12 showed significant improvement in protease resistance and antimicrobial activity compared to that of the template peptide. This study provides a promising strategy for the development of antimicrobial drugs.


Subject(s)
Anti-Bacterial Agents , Antimicrobial Cationic Peptides , Microbial Sensitivity Tests , Anti-Bacterial Agents/pharmacology , Anti-Bacterial Agents/chemistry , Anti-Bacterial Agents/chemical synthesis , Antimicrobial Cationic Peptides/pharmacology , Antimicrobial Cationic Peptides/chemistry , Antimicrobial Cationic Peptides/chemical synthesis , Animals , Proteolysis , Hemolysis/drug effects , Gram-Positive Bacteria/drug effects , Humans , Structure-Activity Relationship , Protein Structure, Secondary , Gram-Negative Bacteria/drug effects , Protein Stability
9.
J Pept Sci ; 30(5): e3562, 2024 May.
Article in English | MEDLINE | ID: mdl-38148630

ABSTRACT

The non-POU domain-containing octamer-binding protein (NONO) is a nucleic acid-binding protein with diverse functions that has been identified as a potential cancer target in cell biology studies. Little is known about structural motifs that mediate binding to NONO apart from its ability to form homodimers, as well as heterodimers and oligomers with related homologues. We report a stapling approach to macrocyclise helical peptides derived from the insulin-like growth factor binding protein (IGFBP-3) that NONO interacts with, and also from the dimerisation domain of NONO itself. Using a range of chemistries including Pd-catalysed cross-coupling, cysteine arylation and cysteine alkylation, we successfully improved the helicity and observed modest peptide binding to the NONO dimer, although binding could not be saturated at micromolar concentrations. Unexpectedly, we observed cell permeability and preferential nuclear localisation of various dye-labelled peptides in live confocal microscopy, indicating the potential for developing peptide-based tools to study NONO in a cellular context.


Subject(s)
DNA-Binding Proteins , RNA-Binding Proteins , RNA-Binding Proteins/chemistry , RNA-Binding Proteins/metabolism , Cysteine , Peptides/metabolism , Permeability
10.
J Pept Sci ; 30(1): e3533, 2024 Jan.
Article in English | MEDLINE | ID: mdl-37431279

ABSTRACT

Aurein1.2 is secreted by the Australian tree frog Litoria aurea and is active against a broad range of infectious microbes including bacteria, fungi, and viruses. Its antifungal potency has garnered considerable interest in developing novel classes of natural antifungal agents to fight pathogenic infection by fungi. However, serious pharmacological hurdles remain, hindering its clinical translation. To alleviate its susceptibility to proteolytic degradation and improve its antifungal activity, six conformationally locked peptides were synthesized through hydrocarbon stapling modification and evaluated for their physicochemical and antifungal parameters. Among them, SAU2-4 exhibited significant improvement in helicity levels, protease resistance, and antifungal activity compared to the template linear peptide Aurein1.2. These results confirmed the prominent role of hydrocarbon stapling modification in the manipulation of peptide pharmacological properties and enhanced the application potential of Aurein1.2 in the field of antifungal agent development.


Subject(s)
Antifungal Agents , Peptides , Antifungal Agents/pharmacology , Antifungal Agents/chemistry , Australia , Peptides/pharmacology , Peptides/chemistry , Hydrocarbons/chemistry , Bacteria , Microbial Sensitivity Tests
11.
Colorectal Dis ; 26(4): 766-771, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38302860

ABSTRACT

AIM: Natural orifice specimen extraction (NOSE) in left-sided colorectal surgery requires application of the circular stapler anvil to the proximal bowel without exteriorization through an additional abdominal incision. We describe an intracorporeal method to secure the stapler anvil, termed the intracorporeal antimesenteric ancillary trocar (IAAT) technique. METHOD: The ancillary trocar is attached to the stapler anvil before introduction into the abdominal cavity through the anal or vaginal orifice. The colon is incised before the trocar spike is brought out through the antimesenteric surface 3-4 cm within the cut edge. A linear stapler is used to seal the bowel end. The ancillary trocar is detached and retrieved via the NOSE conduit. Following the NOSE procedure, a side-to-end colorectal anastomosis is performed with the transanal circular stapler. RESULTS: Ten consecutive patients underwent elective left-sided colorectal resection with IAAT for NOSE (seven transanal, three transvaginal) from January to June 2023. Median age and body mass index were 66 (range 47-74) years and 24.3 (range 17.9-30.8) kg/m2 respectively. Two (20%) patients underwent sigmoid colectomy for sigmoid volvulus while eight (80%) underwent anterior resection for colorectal cancer. Median operating time, operative blood loss and postoperative length of hospital stay were 170 (range 140-240) min, 20 (range 10-40) mL and 1 (range 1-3) day respectively. There were no postoperative complications, readmissions or reoperations. Median follow-up duration was 3 (range 1-6) months. CONCLUSION: The IAAT double-stapling side-to-end anastomotic technique is safe and feasible for patients undergoing left-sided colorectal resection with NOSE, resulting in good outcomes.


Subject(s)
Anastomosis, Surgical , Colectomy , Natural Orifice Endoscopic Surgery , Humans , Female , Middle Aged , Anastomosis, Surgical/methods , Anastomosis, Surgical/instrumentation , Aged , Male , Natural Orifice Endoscopic Surgery/methods , Natural Orifice Endoscopic Surgery/instrumentation , Colectomy/methods , Colectomy/instrumentation , Colon/surgery , Surgical Instruments , Vagina/surgery , Surgical Staplers , Surgical Stapling/methods , Surgical Stapling/instrumentation , Rectum/surgery , Operative Time
12.
Bioorg Chem ; 145: 107239, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38428282

ABSTRACT

Antimicrobial resistance (AMR) is a serious global concern and a huge burden on the healthcare system. Antimicrobial peptides (AMPs) are considered as a solution of AMR due to their membrane-lytic and intracellular mode of action and therefore resistance development against AMPs is less frequent. One such AMPs, temporin-L (TL) is a 13-mer peptide reported as a potent and broad-spectrum antibacterial agent with significant immunomodulatory activity. However, TL is toxic to human erythrocytes at their antibacterial concentrations and therefore various analogues were synthesized with potent antimicrobial activity and lower hemolytic activity. In this work, we have selected a non-toxic engineered analogue of TL (eTL) and performed hydrocarbon stapling of amino acid residues at i to i + 4 positions at different part of sequence. The synthesized peptides were investigated against both the gram-positive and gram-negative bacteria as well as methicillin resistant S. aureus, its MIC was measured in the concentrations range of 0.9-15.2 µM. All analogues were found equal or better antibacterial as compared to parent peptide. Interestingly one analogue eTL [5-9] was found to be non-cytotoxic and stable in presence of the human serum. Mode of action studies revealed membrane depolarizing and disruptive mode of action with live MRSA. Further in vivo studies of antimicrobial against MRSA infection and anti-endotoxin activities in mice model revealed potential activity of the stapled peptide analogue. Overall, this reports on stapled analogue of the AMPs highlights an important strategy for the development of new antibacterial therapeutics against AMR.


Subject(s)
Anti-Infective Agents , Methicillin-Resistant Staphylococcus aureus , Animals , Mice , Humans , Anti-Bacterial Agents/pharmacology , Anti-Bacterial Agents/chemistry , Peptide Hydrolases , Gram-Positive Bacteria , Gram-Negative Bacteria , Antimicrobial Cationic Peptides/pharmacology , Antimicrobial Cationic Peptides/chemistry , Anti-Infective Agents/pharmacology , Endopeptidases , Hydrocarbons , Microbial Sensitivity Tests
13.
Article in English | MEDLINE | ID: mdl-39147016

ABSTRACT

OBJECTIVE: The da Vinci SP Surgical System (SP) received regulatory approval for use in gynecological surgeries in Japan in 2023. Given the advantages of the precision of a robot, less pain, and the cosmesis of single-port surgery, the da Vinci SP is expected to be further used for minimally invasive surgeries. To the best of our knowledge, this is the first report of the use of SP for the treatment of rectal endometriosis with segmental bowel resection. SETTING: An urban general hospital. Stepwise demonstration of the technique with narrated video footage. PARTICIPANTS: The patient was a 46-year-old woman presented with chronic pelvic pain, pain on defecation and constipation. Magnetic resonance imaging showed uterine large fibroid, left ovarian endometrioma, and 38mm of rectal endometriosis, with complete cul-de-sac obliteration. INTERVENTIONS: We made a 30-mm vertical incision at the umbilicus, then placed the access port, and inserted three articulating instruments and a camera. An assistant port was placed in the right lower quadrant for using the linear stapler. The surgical steps were completely identical to conventional multiport laparoscopic robotic surgery. This suggests that conventional laparoscopic or robotic skills are highly transferrable to SP. SP offer several advantages, including high-resolution three-dimensional visualization, articulating instruments, and improved dexterity and range of motion. In addition, the umbilical access port was particularly useful for proximal bowel resection, specimen retrieval, and anvil positioning during bowel resection. The total operative time was 216 minutes. The estimated blood loss was 100 ml without any complications. The uterine weight was 800 g. The postoperative course was uneventful, with no perioperative complications, including no postoperative bladder dysfunction or low anterior resection syndrome [1, 2]. CONCLUSION: The use of SP with the access port for segmental bowel resection for rectal endometriosis is technically safe and feasible, with good cosmesis and less pain.

14.
Mar Drugs ; 22(7)2024 Jul 14.
Article in English | MEDLINE | ID: mdl-39057423

ABSTRACT

α-Conotoxins, as selective nAChR antagonists, can be valuable tools for targeted drug delivery and fluorescent labeling, while conotoxin-drug or conotoxin-fluorescent conjugates through the disulfide bond are rarely reported. Herein, we demonstrate the [2,4] disulfide bond of α-conotoxin as a feasible new chemical modification site. In this study, analogs of the α-conotoxin LsIA cysteine[2,4] were synthesized by stapling with five linkers, and their inhibitory activities against human α7 and rat α3ß2 nAChRs were maintained. To further apply this method in targeted delivery, the alkynylbenzyl bromide linker was synthesized and conjugated with Coumarin 120 (AMC) and Camptothecin (CPT) by copper-catalyzed click chemistry, and then stapled between cysteine[2,4] of the LsIA to construct a fluorescent probe and two peptide-drug conjugates. The maximum emission wavelength of the LsIA fluorescent probe was 402.2 nm, which was essentially unchanged compared with AMC. The cytotoxic activity of the LsIA peptide-drug conjugates on human A549 was maintained in vitro. The results demonstrate that the stapling of cysteine[2,4] with alkynylbenzyl bromide is a simple and feasible strategy for the exploitation and utilization of the α-conotoxin LsIA.


Subject(s)
Conotoxins , Cysteine , Humans , Conotoxins/chemistry , Conotoxins/pharmacology , Cysteine/chemistry , Animals , Disulfides/chemistry , A549 Cells , Drug Delivery Systems , Rats , Nicotinic Antagonists/pharmacology , Nicotinic Antagonists/chemistry , Fluorescent Dyes/chemistry , Receptors, Nicotinic/metabolism , Coumarins/chemistry , Coumarins/pharmacology , Click Chemistry
15.
Angew Chem Int Ed Engl ; 63(24): e202402611, 2024 06 10.
Article in English | MEDLINE | ID: mdl-38607929

ABSTRACT

METTL3, a primary methyltransferase catalyzing the RNA N6-methyladenosine (m6A) modification, has been identified as an oncogene in several cancer types and thus nominated as a potentially effective target for therapeutic inhibition. However, current options using this strategy are limited. In this study, we targeted protein-protein interactions at the METTL3-METTL14 binding interface to inhibit complex formation and subsequent catalysis of the RNA m6A modification. Among candidate peptides, RM3 exhibited the highest anti-cancer potency, inhibiting METTL3 activity while also facilitating its proteasomal degradation. We then designed a stapled peptide inhibitor (RSM3) with enhanced peptide stability and formation of the α-helical secondary structure required for METTL3 interaction. Functional and transcriptomic analysis in vivo indicated that RSM3 induced upregulation of programmed cell death-related genes while inhibiting cancer-promoting signals. Furthermore, tumor growth was significantly suppressed while apoptosis was enhanced upon RSM3 treatment, accompanied by increased METTL3 degradation, and reduced global RNA methylation levels in two in vivo tumor models. This peptide inhibitor thus exploits a mechanism distinct from other small-molecule competitive inhibitors to inhibit oncogenic METTL3 activity. Our findings collectively highlight the potential of targeting METTL3 in cancer therapies through peptide-based inhibition of complex formation and proteolytic degradation.


Subject(s)
Antineoplastic Agents , Methyltransferases , Peptides , Methyltransferases/metabolism , Methyltransferases/antagonists & inhibitors , Humans , Peptides/chemistry , Peptides/pharmacology , Peptides/metabolism , Antineoplastic Agents/pharmacology , Antineoplastic Agents/chemistry , Antineoplastic Agents/metabolism , Adenosine/analogs & derivatives , Adenosine/chemistry , Adenosine/metabolism , Adenosine/pharmacology , Animals , Cell Proliferation/drug effects , Mice , Neoplasms/drug therapy , Neoplasms/metabolism , Neoplasms/pathology , Enzyme Inhibitors/chemistry , Enzyme Inhibitors/pharmacology , Cell Line, Tumor , Apoptosis/drug effects
16.
Angew Chem Int Ed Engl ; 63(16): e202318893, 2024 04 15.
Article in English | MEDLINE | ID: mdl-38376389

ABSTRACT

α-Ketoaldehydes play versatile roles in the ubiquitous natural processes of protein glycation. However, leveraging the reactivity of α-ketoaldehydes for biomedical applications has been challenging. Previously, the reactivity of α-ketoaldehydes with guanidine has been harnessed to design probes for labeling Arg residues on proteins in an aqueous medium. Herein, a highly effective, broadly applicable, and operationally simple protocol for stapling native peptides by crosslinking two amino groups through diverse imidazolium linkers with various α-ketoaldehyde reagents is described. The use of hexafluoroisopropanol as a solvent facilitates rapid and clean reactions under mild conditions and enables unique selectivity for Lys over Arg. The naturally occurring GOLD/MOLD linkers have been expanded to encompass a wide range of modified glyoxal-lysine dimer (OLD) linkers. In a proof-of-concept trial, these modular stapling reactions enabled a convenient two-round strategy to streamline the structure-activity relationship (SAR) study of the wasp venom peptide anoplin, leading to enhanced biological activities.


Subject(s)
Glyoxal , Lysine , Glyoxal/chemistry , Lysine/chemistry , Amines , Aldehydes , Peptides , Cross-Linking Reagents/chemistry
17.
Chembiochem ; 24(5): e202200570, 2023 03 01.
Article in English | MEDLINE | ID: mdl-36567253

ABSTRACT

The incorporation of photoswitches into the molecular structure of peptides and proteins enables their dynamic photocontrol in complex biological systems. Here, a perfluorinated azobenzene derivative triggered by amber light was site-specifically conjugated to cysteines in a helical peptide by perfluoroarylation chemistry. In response to the photoisomerization (trans→cis) of the conjugated azobenzene with amber light, the secondary structure of the peptide was modulated from a disorganized into an amphiphilic helical structure.


Subject(s)
Amber , Peptides , Peptides/chemistry , Proteins , Protein Structure, Secondary , Azo Compounds/chemistry , Light
18.
Chembiochem ; 24(13): e202300098, 2023 07 03.
Article in English | MEDLINE | ID: mdl-36917494

ABSTRACT

Over the past decades, several strategies for inducing and stabilizing secondary structure formation in peptides have been developed to increase their proteolytic stability and their binding affinity to specific interaction partners. Here, we report how our recently introduced chemoselective Pd-catalyzed cysteine allylation reaction can be extended to stapling and how the resulting alkene-containing staples themselves can be further modified to introduce additional probes into such stabilized peptides. The latter is demonstrated by introducing a fluorophore as well as a PEG moiety into different stapled peptides using bioorthogonal thiol-ene and Diels-Alder reactions. Furthermore, we investigated structural implications of our allyl staples when used to replace conformationally relevant disulfide bridges. To this end, we chose a selective binder of integrin α3 ß1 (LXY3), which is only active in its cyclic disulfide form. We replaced the disulfide bridge by different stapling reagents in order to increase stability and binding affinity towards integrin α3 ß1 .


Subject(s)
Cysteine , Peptides , Cysteine/chemistry , Peptides/chemistry , Sulfhydryl Compounds/chemistry , Peptide Hydrolases , Disulfides
19.
J Mol Recognit ; 36(8): e3045, 2023 08.
Article in English | MEDLINE | ID: mdl-37415317

ABSTRACT

Interleukin-17A (IL-17A) is a pro-inflammatory cytokine implicated in diverse autoimmune and inflammatory disorders such as psoriasis and Kawasaki disease. Mature IL-17A is a homodimer that binds to the extracellular type-III fibronectin D1:D2-dual domain of its cognate IL-17 receptor A (IL-17RA). In this study, we systematically examined the structural basis, thermodynamics property, and dynamics behavior of IL-17RA/IL-17A interaction and computationally identified two continuous hotspot regions separately from different monomers of IL-17A homodimer that contribute significantly to the interaction, namely I-shaped and U-shaped segments, thus rendered as a peptide-mediated protein-protein interaction (PmPPI). Self-inhibitory peptides (SIPs) are derived from the two segments to disrupt IL-17RA/IL-17A interaction by competitively rebinding to the IL-17A-binding pocket on IL-17RA surface, which, however, only have a weak affinity and low specificity for IL-17RA due to lack of the context support of intact IL-17A protein, thus exhibiting a large flexibility and intrinsic disorder when splitting from the protein context and incurring a considerable entropy penalty when rebinding to IL-17RA. The U-shaped segment is further extended, mutated and stapled by a disulfide bridge across its two strands to obtain a number of double-stranded cyclic SIPs, which are partially ordered and conformationally similar to their native status at IL-17RA/IL-17A complex interface. Experimental fluorescence polarization assays substantiate that the stapling can moderately or considerably improve the binding affinity of U-shaped segment-derived peptides by 2-5-fold. In addition, computational structural modeling also reveals that the stapled peptides can bind in a similar mode with the native crystal conformation of U-shaped segment in IL-17RA pocket, where the disulfide bridge is out of the pocket for avoiding intervene of the peptide binding.


Subject(s)
Interleukin-17 , Receptors, Interleukin-17 , Interleukin-17/chemistry , Interleukin-17/metabolism , Interleukin-17/pharmacology , Receptors, Interleukin-17/chemistry , Receptors, Interleukin-17/metabolism , Peptides/chemistry , Models, Molecular , Protein Binding
20.
Chemistry ; 29(29): e202203624, 2023 May 22.
Article in English | MEDLINE | ID: mdl-36891840

ABSTRACT

Peptide stapling represents a versatile strategy to generate peptide derivatives with stable helical structures. While a wide range of skeletons have been investigated for cyclizing the side chains of peptides, the stereochemical outcomes from the linkers remain to be better understood. In this study, we incorporated α-amino acids (α-AAs) as bridges to construct side chain-stapled analogs of an interleukin-17A-binding peptide (HAP) and evaluated the impacts of the staples on the peptide's properties. While all AA-derived peptidyl staples drastically increase the enzymatic stability of HAP, our results indicate that compared to the D-amino acid bridges, the L-AA-based staples may generate more significant impacts in increasing the helicity and enhancing the interleukin-17A(IL-17A)-binding affinity of the modified peptide. Using Rosetta modelling and molecular dynamics (MD) simulations, we demonstrate that the chirality (L/D) possessed within the AAs substantially influences the conformation of stapled HAP peptides, providing either stabilizing or destabilizing effects. Based on the computational model, a modification of the stapled HAP leads to the discovery of a peptide with further enhanced helicity, enzymatic stability and IL-17A-inhibiting ability. This systematic study reveals that chiral AAs can serve as modulatory linkers for optimizing the structures and properties of stapled peptides.


Subject(s)
Interleukin-17 , Peptides , Peptides/chemistry , Amino Acids , Molecular Conformation , Protein Binding
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