Target intelligence / Profile preview

Mu-crystallin (Ketimine reductase) (CRYM)

Target
CRYM
Molecular classification
Enzyme, Reductase, Thyroid hormone-binding protein, Crystallin
01

Overview

Mu-crystallin (CRYM), also known as ketimine reductase, is a multifunctional cytoplasmic protein that plays a dual role as an enzyme and a high-affinity thyroid hormone-binding protein [1, 2, 8]. As an enzyme, it catalyzes the NADP(H)-dependent reduction of cyclic ketimines, such as those derived from the lysine degradation pathway (e.g., Δ1-piperideine-2-carboxylate), which is particularly important in the brain [3, 10, 16]. Concurrently, it binds triiodothyronine (T3) and thyroxine (T4) with high affinity, effectively sequestering these hormones in the cytoplasm and regulating their availability for nuclear thyroid hormone receptors [7, 12, 15]. Genetic mutations in the CRYM gene are a known cause of autosomal dominant nonsyndromic deafness (DFNA40), likely due to disrupted thyroid hormone homeostasis and potassium recycling in the cochlea [6, 13, 15]. In oncology, CRYM is often downregulated in aggressive prostate cancer, where it normally acts as an antagonist to thyroid and androgen receptor signaling [7]. Its expression levels also influence skeletal muscle plasticity and metabolism, making it a target of interest for muscle-wasting diseases and metabolic disorders [11, 14].

Other names
Ketimine reductaseMu-crystallinNADP-regulated thyroid hormone-binding proteinTHBPCRYMP2C/Pyr2C reductase1-piperideine-2-carboxylate/1-pyrroline-2-carboxylate reductase
02

Mechanism of action

Binding and sequestration of triiodothyronine (T3) in the cytoplasm to regulate its availability for nuclear receptors; NADP-dependent reduction of cyclic ketimines in the pipecolic acid pathway.

03

Biological functions

Thyroid hormone bindingThyroid hormone transportKetimine reductionLysine metabolismGlutamate metabolismPotassium ion recyclingRegulation of muscle plasticity
04

Disease associations

Nonsyndromic deafness (DFNA40)Prostate cancerFacioscapulohumeral muscular dystrophySarcopeniaSchizophrenia
05

Safety considerations

Disruption of local thyroid hormone homeostasisPotential impact on auditory functionAlteration of muscle fiber type and metabolic phenotype
06

Interacting drugs

Triiodothyronine (T3)

1 more in the full profile.

07

Biomarkers

CRYM expression levelsCRYM mRNA levels in skeletal muscle

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