Target intelligence / Profile preview

Presequence translocase-associated motor subunit PAM16 (PAM16) (PAM16)

Target
PAM16
Molecular classification
Mitochondrial protein, Chaperone regulator, TIM23 complex subunit
01

Overview

Presequence translocase-associated motor subunit PAM16 (PAM16), also known as MAGMAS, is an essential component of the mitochondrial protein import machinery located within the inner mitochondrial membrane [1]. It serves as a critical regulator of the TIM23 translocase complex by forming a stable heterodimer with PAM18, which in turn modulates the ATPase activity of mitochondrial Hsp70 (mtHsp70) [1, 4]. This interaction is vital for the energy-driven translocation of nuclear-encoded proteins into the mitochondrial matrix, a process necessary for mitochondrial biogenesis and cellular metabolism [4, 5]. Clinically, mutations in the PAM16 gene are the underlying cause of Spondylometaphyseal dysplasia, Schmidt type, a rare genetic disorder characterized by severe skeletal abnormalities and short stature [2]. Furthermore, PAM16 is frequently overexpressed in various malignancies, including prostate and pituitary cancers, where it plays a role in promoting cell survival and conferring resistance to pro-apoptotic stimuli [3]. Due to its role in maintaining mitochondrial integrity in tumor cells, PAM16 has emerged as a viable therapeutic target in oncology [3]. Experimental small-molecule inhibitors, such as BTG-0028, have been developed to disrupt PAM16 function, leading to mitochondrial dysfunction and the induction of apoptosis in cancer cells [3, 5].

Other names
MAGMASMitochondria-associated granulocyte-macrophage colony-stimulating factor signaling moleculeTIM16TIMM16Presequence translocase-associated motor 16
02

Mechanism of action

Inhibition of the PAM16-PAM18 interaction to disrupt mitochondrial protein import and induce apoptosis in cancer cells.

03

Biological functions

Mitochondrial protein importRegulation of mitochondrial Hsp70 ATPase activityMitochondrial membrane organizationCell survival regulation
04

Disease associations

Spondylometaphyseal dysplasia (Schmidt type)Prostate cancerPituitary adenomaSkeletal dysplasia
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Safety considerations

Essential role in mitochondrial biogenesisPotential systemic toxicity due to mitochondrial dysfunctionImpact on normal skeletal development
06

Interacting drugs

BTG-0028

1 more in the full profile.

07

Biomarkers

PAM16 protein overexpressionPAM16 gene mutations (e.g., N76D)

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