Target intelligence / Profile preview

Neurolysin, mitochondrial (NLN)

Target
NLN
Molecular classification
Enzyme, Metallopeptidase, Peptidase, Zinc metalloendopeptidase, Hydrolase (endopeptidase), Member of the M3 family of metallopeptidases
01

Overview

Neurolysin, mitochondrial (NLN) is a zinc-dependent metallopeptidase enzyme of the M3 family, encoded by the NLN gene. It hydrolyzes short bioactive peptides (typically 5–17 amino acids), including important signaling molecules such as neurotensin, angiotensins, bradykinin, and substance P, thereby modulating neurochemical and cardiovascular processes. NLN is distributed across tissues with high abundance in brain and liver, localizing to the cytosol, mitochondria, plasma membrane, and extracellular space depending on cell type. Structurally, it features a dumbbell-shaped central cavity with a zinc-containing catalytic site in a deep channel, conferring selectivity for small peptides via substrate channel gating. Neurolysin plays vital physiological roles in neuropeptide cleavage, pain perception, blood pressure regulation, and mitochondrial respiratory chain dynamics. Aberrant expression or function of NLN is implicated in diseases such as acute myeloid leukemia, various neurological disorders, cardiovascular disease, and cancer. Ongoing research aims to develop small molecule modulators for therapeutic applications, though the enzyme's diverse physiological roles present challenges for selective targeting

Other names
AGTBPKIAA1226MEPEP24.16MOPAngiotensin-binding proteinMicrosomal endopeptidaseMitochondrial oligopeptidase MNeurotensin endopeptidase
02

Mechanism of action

Competitive inhibition at the active site (by peptide inhibitors such as dynorphin A(1–13)), Allosteric inhibition (by small molecules), Enzyme activation/inhibition affecting peptide substrate turnover (e.g., neurotensin, angiotensin, bradykinin modulation)

03

Biological functions

Peptide degradationSignal transduction regulation (by bioactive peptide processing)Neurotransmitter metabolismMitochondrial function regulationRegulation of blood pressurePain modulation
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Disease associations

Cancer (including acute myeloid leukemia)Neurodegenerative diseaseCardiovascular diseaseStrokeSepsisPain disordersPsychiatric and neurologic disorders (schizophrenia, Huntington disease, Parkinson disease)Glucose metabolism disorders
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Safety considerations

Targeting NLN may disrupt multiple signaling pathways due to its broad spectrum of peptide substrates, risking effects on blood pressure, pain perception, neurological and metabolic functionsits role in mitochondrial function suggests possible effects on cellular energy metabolism
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Interacting drugs

No approved drugs with direct clinical use targeting NLN, but experimental small molecule inhibitors and peptide inhibitors (e.g., dynorphin A(1–13)), and there is ongoing research for small molecule modulators
07

Biomarkers

Increased expression of NLN as a putative biomarker in certain cancers (notably acute myeloid leukemia)potential monitoring of processed peptide levels such as neurotensin

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