Mitochondrial KMT9 methylates DLAT to control pyruvate dehydrogenase activity and prostate cancer growth

Y Yanhan Jia S Sheng Wang S Sylvia Urban J Judith M. Müller M Manuela Sum Q Qing Wang H Helena Bauer U Uwe Schulte H Heike Rampelt N Nikolaus Pfanner K Katrin M. Schüle A Axel Imhof I Ignasi Forné C Christopher Berlin A August Sigle C Christian Gratzke H Holger Greschik E Eric Metzger R Roland Schüle

Abstract

Abstract Prostate cancer (PCa) growth depends on de novo lipogenesis controlled by the mitochondrial pyruvate dehydrogenase complex (PDC). In this study, we identify lysine methyltransferase (KMT)9 as a regulator of PDC activity. KMT9 is localized in mitochondria of PCa cells, but not in mitochondria of other tumor cell types. Mitochondrial KMT9 regulates PDC activity by monomethylation of its subunit dihydrolipoamide transacetylase (DLAT) at lysine 596. Depletion of KMT9 compromises PDC activity, de novo lipogenesis, and PCa cell proliferation, both in vitro and in a PCa mouse model. Finally, in human patients, levels of mitochondrial KMT9 and DLAT K596me1 correlate with Gleason grade. Together, we present a mechanism of PDC regulation and an example of a histone methyltransferase with nuclear and mitochondrial functions. The dependency of PCa cells on mitochondrial KMT9 allows to develop therapeutic strategies to selectively fight PCa.

Article Details

Volume / Issue Vol. 16, Issue 1
Published January 30, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (19)

Y

Yanhan Jia

S

Sheng Wang

S

Sylvia Urban

J

Judith M. Müller

M

Manuela Sum

Q

Qing Wang

H

Helena Bauer

U

Uwe Schulte

H

Heike Rampelt

N

Nikolaus Pfanner

K

Katrin M. Schüle

A

Axel Imhof

I

Ignasi Forné

C

Christopher Berlin

A

August Sigle

C

Christian Gratzke

H

Holger Greschik

E

Eric Metzger

R

Roland Schüle