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Research hub

B7-33 Research Hub

B7-33 is a synthetic, single-chain peptide analogue based on the B-chain of human relaxin-2 (H2 relaxin), having been designed as a well-defined molecular research compound for the study of RXFP1-associated receptor signalling in experimental models.

  • B7-33
  • Synthetic Peptide
  • Relaxin-2 Derived
  • Single-Chain
  • Lyophilized Powder
01

Technical Overview

The B-chain of the human peptide hormone relaxin-2 (H2 relaxin) is the source of the synthetic single-chain peptide counterpart B7-33. It was created using logical peptide design to mimic some of the native hormone's structural and functional traits while providing a more straightforward molecular structure than the two-chain parent protein. B7-33 is a short synthetic peptide made via Solid Phase Peptide Synthesis (SPPS), in contrast to recombinant relaxin-2, which is made up of A- and B-chains connected by disulphide linkages.

The peptide originated from structure–function studies investigating the receptor-binding properties of relaxin-2 and the contribution of its B-chain to receptor recognition. These investigations led to the development of B7-33 as a research tool for examining relaxin family peptide signalling and receptor pharmacology. Since its initial characterisation, B7-33 has been recognised in experimental research for studies exploring relaxin receptor interactions, ligand binding and intracellular signalling associated with the relaxin family peptide receptor 1 (RXFP1).

Within laboratory settings, B7-33 is investigated using biochemical assays, cultured cell systems and preclinical experimental models to characterise its molecular interactions and pharmacological profile. As a synthetic peptide analogue, it is routinely analysed using high-performance liquid chromatography (HPLC) to verify purity and liquid chromatography–mass spectrometry (LC-MS) to confirm molecular identity. Batch-specific Certificates of Analysis (CoAs) provide traceable documentation of peptide identity, purity and analytical quality prior to research use.

02

Chemical Classification

Chemical Name
B7-33 (synthetic human relaxin-2 B-chain analogue)
Common Name(s)
B7-33; B7-33 peptide; Human Relaxin-2 B-chain analogue; Relaxin-2 B-chain-derived peptide; Single-chain Relaxin-2 derivative
Molecular Formula
C131H228N40O37S1
Molecular Weight
2987.52 g/mol
Purity
98.5%
Compound Class
Synthetic linear single-chain oligopeptide; relaxin-2 B-chain analogue
Origin
Synthetic; derived from the B-chain sequence of human relaxin-2 (H2 relaxin/RLN2)
Amino Acid Sequence
VIKLSGRELVRAQIAISGMSTWSKRSL
03

Molecular Characteristics

The B-chain of human relaxin-2 (H2 relaxin) is the source of the synthetic peptide counterpart B7-33. Its main structure is made up of a brief linear amino acid sequence that was designed to simplify the overall molecular architecture while preserving important receptor-binding characteristics of the native hormone. B7-33 is a single-chain peptide produced by Solid Phase Peptide Synthesis (SPPS), in contrast to human relaxin-2, which is made up of two peptide chains (A- and B-chains) connected by disulphide linkages.

B7-33 does not take on the intricate tertiary structure typical of the full-length relaxin protein because of its comparatively short sequence. Rather, it mostly resides as a flexible peptide in solution, with transient secondary structural components that are affected by solvent content, pH, and ionic strength.

The physicochemical properties of B7-33 are determined by its amino acid composition, including the distribution of charged, polar and hydrophobic residues, which influence its net charge, hydrophilicity and chromatographic behaviour. Compared to recombinant relaxin proteins, B7-33's synthetic peptide equivalent does not experience post-translational modifications like glycosylation, making analytical characterization easier. It should be handled in a lab setting to maintain structural integrity since, like other short synthetic peptides, it is prone to proteolytic degradation. Peptide identity, purity and molecular mass are routinely confirmed using analytical techniques including high-performance liquid chromatography (HPLC) and liquid chromatography–mass spectrometry (LC-MS) prior to release for research applications.

04

Mechanism Under Investigation

Recent research has focused on B7-33, a synthetic peptide analogue made from the B-chain of human relaxin-2 (H2 relaxin). The peptide preserves key receptor-binding properties of the natural hormone despite having a simplified single-chain structure, according to published experimental results. Research has mostly focused on its interaction with relaxin family peptide receptor 1 (RXFP1) and the downstream signaling pathways associated with receptor activation.

In vitro models have explored the interaction of B7-33 with RXFP1 using receptor-binding assays, recombinant expression systems and cultured mammalian cells. Structural and pharmacological studies have examined ligand recognition, receptor affinity and signal transduction to better understand how the peptide engages the receptor compared with full-length relaxin-2. Experimental investigations have also characterised biased agonism, examining whether B7-33 preferentially engages selected intracellular signalling pathways following receptor activation.

Published studies have investigated several downstream signalling networks associated with B7-33 following interaction with RXFP1. Experimental models have examined signalling involving extracellular signal-regulated kinase (ERK1/2), cyclic adenosine monophosphate (cAMP) and nitric oxide-associated pathways using phosphorylation assays, reporter gene analyses and biochemical techniques. These investigations have focused on characterising receptor-mediated intracellular communication and the molecular events that follow ligand binding under controlled laboratory conditions.

Current laboratory investigations have also examined receptor internalisation, ligand–receptor kinetics and intracellular trafficking following exposure to B7-33. Cell-based studies have utilised fluorescence microscopy, recombinant receptor systems and molecular biology techniques to investigate receptor localisation, signal duration and protein–protein interactions associated with RXFP1 activation.

The molecular mechanism of B7-33 continues to be investigated through structural biology, receptor pharmacology and preclinical experimental research. Published evidence characterises the peptide as a selective relaxin-2 analogue whose principal area of investigation centres on RXFP1-mediated signalling, ligand–receptor interactions and the characterisation of downstream intracellular pathways. Although several signalling mechanisms have been described in experimental models, ongoing research continues to define the structural determinants of receptor activation and pathway selectivity.

Research described here relates to preclinical and laboratory studies and does not establish clinical efficacy or suitability for human use. The main studies are listed in the references.

05

Experimental Research Areas

01

RXFP1 Receptor Signalling

The behaviour of B7-33 has been studied using laboratory models designed to examine its interactions with relaxin family peptide receptor 1 (RXFP1). The experimental endpoints cited in the literature are receptor-dependent ERK1/2 phosphorylation and a comparative analysis of the intracellular signalling responses.

02

Fibroblast Cell Models

Cultured fibroblast systems have been employed in order to examine the molecular response to B7-33 under controlled experimental conditions, and the studies have kept a close eye on various biochemical endpoints such as ERK1/2 signalling, matrix-associated proteins and matrix metalloproteinase activity.

03

Extracellular Matrix Research

B7-33 has been used in preclinical studies that looked at molecular processes associated with the extracellular matrix. The analytical endpoints have comprised measurements related to collagen, the activity of matrix metalloproteinases and signalling pathways associated with receptors.

04

Vascular Tissue Models

Researchers use isolated vascular tissues to study B7-33 signalling in the lab. Methods include wire myography and biochemical analysis of receptor-dependent pathways.

05

RXFP1–AT2R Signalling

Mechanistic studies have been carried out in experimental systems to examine the interactions between RXFP1 and the angiotensin II type 2 receptor (AT2R) signalling involving B7-33. The molecular endpoints have comprised ERK1/2 phosphorylation and matrix metalloproteinase activity.

06

Structure–Activity Research

The peptide B7-33 has been used in structure–activity relationship studies as a single-chain peptide derived from relaxin-2. The present study looks at how modifications to the sequence and simplification of the structure affect measurable receptor-associated activity in controlled laboratory systems.

06

Analytical Verification

Solid Phase Peptide Synthesis (SPPS) is commonly used to produce B7-33, a synthetic peptide analogue. After synthesis, shortened peptide sequences, residual synthesis reagents, and other process-related impurities can be removed from the crude peptide through purification, most commonly using preparative high-performance liquid chromatography (HPLC).

Analytical high-performance liquid chromatography (HPLC) can be used to assess peptide purity and evaluate batch consistency, while liquid chromatography–mass spectrometry (LC-MS) can be used to confirm peptide identity and molecular mass. Other analytical techniques, such as peptide mapping or amino acid analysis, may be used when needed to characterize the peptide sequence and composition.

Batch number, peptide identity, purity, molecular mass, and other quality-control information can be documented in a Certificate of Analysis (COA).

Certificate of Analysis
BatchP251016-LR405508
Document Download PDF
HPLC
BatchP251016-LR405508
Document Download PDF
07

Storage & Handling

Store B7-33 at 2–8°C in accordance with the current batch documentation. Keep the lyophilized material protected from moisture, excessive heat, and direct light during storage and shipping.

For laboratory handling, keep the material in its original container and limit unnecessary exposure to environmental conditions. Handle the peptide under appropriate laboratory conditions to help maintain its physical and analytical integrity.

Supplied as Lyophilized Powder
Storage 2–8°C, away from direct sun light
Reconstitution Sterile diluent
After Reconstitution Refrigerate, limit freeze - thaw
08

Questions researchers ask

B7-33 is a synthetic peptide analogue developed from the B-chain of human relaxin-2 (H2 relaxin). It was designed using structure–function studies that identified regions of the native hormone involved in receptor recognition. Rather than reproducing the complete relaxin-2 molecule, B7-33 incorporates selected structural features of the B-chain to enable investigation of receptor-mediated signalling in experimental models.

B7-33 is provided for laboratory research and scientific investigation only. It is not for human consumption or veterinary use and is not intended for administration. It is not intended to diagnose, treat, cure, or prevent any disease or medical condition. Information on this page is provided for scientific research purposes only.

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B7-33 from Peptide Works