AMHR2 Antibody (YA1337)
(Synonyms: AMHR; AMHR2; MISR2; MISRII; MRII)AMHR2 Antibody (YA1337) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to AMHR2.
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Host:
Rabbit
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Isotype:
IgG
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Application:
FC, ELISA
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Reactivity :
Human
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Formulation:
Supplied in PBS containing 50% glycerol, 0.5% BSA and 0.02% sodium azide, pH 7.3.
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Conjugation:
Non-conjugated
Applications
| Application |
FC
FC: Flow Cytometry
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ELISA
ELISA: Enzyme Linked Immunosorbent Assay
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|---|---|---|
| Dilution Ratio | 1:50-1:100 | 1:10000 |
Product Details
AMHR2 Antibody (YA1337) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to AMHR2.
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Host Rabbit
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Clonality Recombinant,Monoclonal
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Species ReactivityHuman
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Observed Molecular WeightObserved band size: 55 kDaNote: Due to possible protein modifications or aggregation, the molecular weight should be confirmed by actual measurement, and the predicted value is for reference only.
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Calculated Molecular Weight Predicted band size: 63 kDa
Recombinant human AMHR2 protein
Endogenous
Affinity Chromatography
Non-conjugated
Unmodified
IgG
Product Properties
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Appearance
Solution
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Formulation
Supplied in PBS containing 50% glycerol, 0.5% BSA and 0.02% sodium azide, pH 7.3.
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Storage & Stability
Stored at -20°C for 1 year. Avoid repeated freeze / thaw cycles.
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Shipping
Shipping with blue ice.
Background
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Function
The anti-Müllerian hormone receptor type II (AMHR2) is a transmembrane serine/threonine kinase receptor that mediates the biological effects of anti-Müllerian hormone (AMH) in gonadal development and folliculogenesis[1][2]. Mechanistically, AMHR2 forms a heteromeric complex with type I receptors to initiate SMAD1/5/8 phosphorylation, regulating granulosa cell differentiation, proliferation, and follicle selection[1]. In vertebrate models, loss of AMHR2 function leads to male-to-female sex reversal in teleosts and affects ovarian follicle growth, indicating its critical role in sex differentiation and reproductive function[2][3]. Compared with related type II receptors in the TGF-β superfamily, AMHR2 exhibits restricted expression in granulosa cells and fetal reproductive tissues, which underpins its specificity in AMH signaling[1]. Polymorphisms in AMHR2, such as the -482 A>G variant, are associated with altered luteinizing hormone levels and polycystic ovary syndrome risk, highlighting its clinical relevance in human reproductive endocrinology[4]. For experimental applications, synthetic agonists and antagonistic peptides, including AMHR2BP, can modulate granulosa cell proliferation, oocyte maturation, and protein expression of FSH-R, BMP15, and GDF9, thus providing tools for studying folliculogenesis and potential fertility interventions[3]. Collectively, AMHR2 serves as a selective mediator of AMH-dependent reproductive signaling, with isoform-specific expression and function that can be leveraged for both mechanistic studies and translational research.
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Subcellular Localization
Membrane; Single-pass type I membrane protein
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Isoforms & Post-Translational Modification
Q16671 has 3 isomers: Q16671-1: 62750 Da (predicted); Q16671-2: 52241 Da (predicted); Q16671-3: 51827 Da (predicted).
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Subunit
Interacts with type I receptor ACVR1
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SwissProt ID
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Synonyms
AMHR; AMHR2; MISR2; MISRII; MRII
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Research Field
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Documentation
References
[1]. Georgopoulos NA, et al. Increased frequency of the anti-mullerian-inhibiting hormone receptor 2 (AMHR2) 482 A>G polymorphism in women with polycystic ovary syndrome: relationship to luteinizing hormone levels. J Clin Endocrinol Metab. 2013 Nov;98(11):E1866-70. [Content Brief]
[2]. Yamaguchi T, et al. Amh/Amhr2 Signaling Causes Masculinization by Inhibiting Estrogen Synthesis during Gonadal Sex Differentiation in Japanese Flounder (Paralichthys olivaceus). Int J Mol Sci. 2023 Jan 27;24(3):2480. [Content Brief]
[3]. López-Paleta N, et al. A fast validation test of gene regulatory network models via the Fokker-Planck equation. J Biol Phys. 2025 May 19;51(1):16. [Content Brief]