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huRAMP2 Mouse
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huRAMP2 Mouse
Product Name
huRAMP2 Mouse
Product ID
C002111
Strain Name
C57BL/6Cya-Ramp2tm1(hRAMP2)/Cya
Background
C57BL/6Cya
Status
When using this mouse strain in a publication, please cite “huRAMP2 Mouse (Catalog C002111) were purchased from Cyagen.”
Product Type
Age
Genotype
Sex
Quantity
The standard delivery applies for a guaranteed minimum of three heterozygous carriers. Breeding services for homozygous carriers and/or specified sex are available.
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Standard products are sold as live mice derived from cryorecovery or expansion. Frozen materials are available upon request. Pricing and lead times depend on real-time inventory.
Basic Information
Related Resource
Basic Information
Gene Name
RAMP2
Gene Alias
--
NCBI ID
Chromosome
Chr 17 (Human)
MGI ID
Datasheet
Strain Description
The RAMP2 gene, a member of the RAMP family, encodes a single‑pass transmembrane protein. RAMP2 is widely expressed in various tissues, with higher expression levels observed in the lung, vascular endothelial cells, heart, placenta, and fetal tissues, and is also detectable in immune‑related cells [1]. This protein forms a heterodimer with the calcitonin receptor‑like receptor (CRLR/CALCRL), constituting the specific receptor for adrenomedullin (AM), i.e., the AM1 receptor. It is involved in regulating receptor trafficking to the plasma membrane, core glycosylation, and ligand‑binding specificity, and activates downstream signaling pathways such as cAMP, thereby playing key roles in angiogenesis, vascular integrity maintenance, lymphatic development, cardiovascular homeostasis, and placental function [2-3]. Additionally, RAMP2 can form a complex with the calcitonin receptor (CALCR) and participate in the regulation of placental and other tissue functions. Dysregulation of RAMP2 expression or function is closely associated with multiple diseases. Heterozygous mutations or functional impairment can disrupt the AM‑RAMP2/CLR‑cAMP axis, leading to retinal ganglion cell death and subsequently primary open‑angle glaucoma (POAG) [4]. RAMP2 deficiency is also linked to vascular hyperpermeability, impaired angiogenesis, placental dysfunction, dilated cardiomyopathy‑like phenotypes, and endocrine abnormalities, and may promote tumor metastasis by disrupting vascular homeostasis and inducing an inflammatory microenvironment [5]. Moreover, RAMP2 exerts a protective role in the pathogenesis of acute respiratory distress syndrome (ARDS) by maintaining pulmonary vascular endothelial barrier function [6].
The huRAMP2 mouse is a humanized model generated via gene editing technology, in which the mouse Ramp2 endogenous signal peptide and extracellular domain were replaced with the human RAMP2 signal peptide and extracellular domain. This model is applicable to mechanistic studies of diseases such as acute respiratory distress syndrome (ARDS) and primary open‑angle glaucoma (POAG), and also serves as a platform for the screening, development, and preclinical in vivo evaluation of therapeutic agents targeting the AM‑RAMP2 system.
Reference
Shindo, Takayuki., Shindo, Takayuki., Tanaka, Megumu., Kamiyoshi, Akiko., & Kamiyoshi, Akiko.. (2022). Receptor Activity Modifying Protein RAMP Sub-Isoforms and Their Functional Differentiation, Which Regulates Functional Diversity of Adrenomedullin. Biology.
McLatchie LM, Fraser NJ, Main MJ, et al. RAMPs regulate the transport and ligand specificity of the calcitonin-receptor-like receptor. Nature. 1998;393(6683):333-339.
Ichikawa-Shindo Y, Sakurai T, Kamiyoshi A, et al. The GPCR modulator protein RAMP2 is essential for angiogenesis and vascular integrity. J Clin Invest. 2008;118(1):29-39.
Gong B, Zhang H, Huang L, et al. Mutant RAMP2 causes primary open-angle glaucoma via the CRLR-cAMP axis. Genet Med. 2019;21(10):2345-2354.
Kechele DO, Dunworth WP, Trincot CE, et al. Endothelial restoration of receptor activity-modifying protein 2 is sufficient to rescue lethality, but survivors develop dilated cardiomyopathy. Hypertension. 2016;68(3):667-677.
Kasahara, Tomoki., Tanaka, Megumu., Zhao, Yunlu., Kamiyoshi, Akiko., & Sakurai, Takayuki.. (2023). Receptor activity-modifying proteins of adrenomedullin (RAMP2/3): Roles in the pathogenesis of ARDS. Peptides.
Strain Strategy
The mouse Ramp2 endogenous signal peptide and extracellular domain were replaced with the human RAMP2 signal peptide and extracellular domain.

Figure 1. Gene editing strategy for huRAMP2 mice.
Application Area
Mechanistic studies of diseases such as acute respiratory distress syndrome (ARDS) and primary open‑angle glaucoma (POAG);
Screening, development, and preclinical in vivo evaluation of therapeutic agents targeting RAMP2.
Related Resource
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