Target intelligence / Profile preview

L-myc-1 proto-oncogene protein (MYCL) (MYCL)

Target
MYCL
Molecular classification
Transcription factor, Basic helix-loop-helix leucine zipper (bHLH-LZ) protein, Nuclear phosphoprotein, Proto-oncogene
01

Overview

L-myc-1 proto-oncogene protein (MYCL) is a member of the MYC family of basic helix-loop-helix leucine zipper (bHLH-LZ) transcription factors, which also includes c-MYC and N-MYC [1, 15]. It functions as a nuclear transcription factor that heterodimerizes with the MAX protein to bind E-box DNA sequences, thereby regulating the expression of genes critical for cell cycle progression, metabolism, and apoptosis [3, 13]. While L-MYC expression is highly restricted in most adult tissues, it is frequently amplified or overexpressed in specific cancers, particularly small cell lung cancer (SCLC) and Merkel cell carcinoma, where it acts as a potent driver of oncogenesis and therapeutic resistance [2, 4, 14]. Beyond its role in cancer, L-MYC is involved in normal physiological processes such as the regulation of inner ear auditory receptor cell differentiation and has been shown to promote induced pluripotent stem cell (iPSC) reprogramming with high efficiency [1, 2, 11]. Historically considered 'undruggable' due to its intrinsically disordered structure and lack of a traditional small-molecule binding pocket, L-MYC is now a focal point for novel therapeutic strategies [12, 16]. These include mini-proteins like Omomyc that disrupt MYC-MAX dimerization, BET bromodomain inhibitors that suppress MYCL transcription, and molecular glue degraders specifically evaluated in L-MYC-amplified tumors [4, 12, 14].

Other names
MYCL1LMYCbHLHe38L-Mycv-myc avian myelocytomatosis viral oncogene lung carcinoma derived homologProtein L-Myc-1Class E basic helix-loop-helix protein 38Myc-related gene from lung cancer
02

Mechanism of action

Inhibition of MYC-MAX dimerization, downregulation of MYC transcription via BET or CDK9 inhibition, targeted protein degradation via molecular glues, and stabilization of MAX-MAX homodimers.

03

Biological functions

Regulation of transcriptionCell cycle progressionCell proliferationApoptosisInduced pluripotent stem cell (iPSC) reprogrammingRegulation of inner ear auditory receptor cell differentiation
04

Disease associations

Small cell lung cancer (SCLC)Merkel cell carcinomaGastric cancerOvarian cancerTriple-negative breast cancerColorectal cancerHematologic cancer
05

Safety considerations

Potential toxicity to normal regenerative tissues due to MYC's role in cell growthThrombocytopenia and other adverse events associated with indirect inhibitors like BET inhibitorsTherapeutic challenge of targeting intrinsically disordered proteins lacking traditional binding pockets
06

Interacting drugs

Omomyc (OMO-103)

7 more in the full profile.

07

Biomarkers

MYCL gene amplificationMYCL protein expression levelsMYCL1 genetic variants (e.g., rs3134615, rs3134613)Loss of heterozygosity at 1p34

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