Target intelligence / Profile preview

Protein kinase C alpha (PKC-α) (PKC-α)

Target
PKC-α
Molecular classification
Enzyme, Serine/threonine-protein kinase, Conventional protein kinase C (cPKC)
01

Overview

Protein kinase C alpha (PKC-α) is a member of the conventional subfamily of serine/threonine protein kinases, characterized by its dependence on calcium and diacylglycerol (DAG) for activation [1, 2, 3]. It is ubiquitously expressed and plays a central role in diverse cellular signaling pathways, including those governing cell proliferation, apoptosis, differentiation, and motility [1, 10, 13]. In the cardiovascular system, PKC-α is a key regulator of cardiac contractility and hypertrophy, while in the immune system, it modulates inflammatory responses and platelet activation [1, 2, 4, 12]. Its role in disease is complex and context-dependent; it acts as a tumor promoter in certain cancers, such as glioma and bladder cancer, by driving cell survival and invasion, but can function as a tumor suppressor in others [2, 10, 15]. Therapeutic strategies targeting PKC-α include small-molecule ATP-competitive inhibitors, antisense oligonucleotides, and modulators of its regulatory domains [2, 3, 5, 14]. However, developing selective therapies remains challenging due to the high structural homology among PKC isoforms and the potential for systemic toxicity arising from its widespread physiological functions [2, 11]. Clinical trials have explored PKC-α inhibitors for cancer and diabetic complications, though many have faced hurdles regarding efficacy and safety [2, 3, 11]. Monitoring PKC-α activity or expression levels serves as a potential biomarker for disease progression and therapeutic response [15, 16, 17].

Other names
PRKCAPKC-alphaProtein kinase C alpha typeAging-associated gene 6PKCAPKCI+/-
02

Mechanism of action

ATP-competitive inhibition, substrate-competitive inhibition, antisense-mediated mRNA degradation, and modulation of regulatory domains (C1/C2) [2, 3, 5, 14].

03

Biological functions

Signal transductionCell proliferationApoptosisCell differentiationCell migrationCell adhesionCardiac contractilityPlatelet activationInflammation
04

Disease associations

CancerCardiovascular diseaseInflammationDiabetesThrombosis
05

Safety considerations

Lack of isoform selectivitySystemic toxicity due to ubiquitous expressionGastrointestinal toxicityHematological toxicityPotential for cardiac dysfunctionContext-dependent role in tumorigenesis (promoter vs. suppressor)
06

Interacting drugs

Midostaurin

9 more in the full profile.

07

Biomarkers

PKC-alpha expression levelsPKC-alpha phosphorylation statusMARCKS phosphorylationPlasma activated PKC-alpha levels

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