Palmitoylation-dependent regulation of cardiomyocyte Rac1 signaling activity and minor effects on cardiac hypertrophy.

The Journal of biological chemistry 2023 Vol.299(12) p. 105426

Baldwin TA, Teuber JP, Kuwabara Y, Subramani A, Lin SJ, Kanisicak O, Vagnozzi RJ, Zhang W, Brody MJ, Molkentin JD

Abstract

S-palmitoylation is a reversible lipid modification catalyzed by 23 S-acyltransferases with a conserved zinc finger aspartate-histidine-histidine-cysteine (zDHHC) domain that facilitates targeting of proteins to specific intracellular membranes. Here we performed a gain-of-function screen in the mouse and identified the Golgi-localized enzymes zDHHC3 and zDHHC7 as regulators of cardiac hypertrophy. Cardiomyocyte-specific transgenic mice overexpressing zDHHC3 show cardiac disease, and S-acyl proteomics identified the small GTPase Rac1 as a novel substrate of zDHHC3. Notably, cardiomyopathy and congestive heart failure in zDHHC3 transgenic mice is preceded by enhanced Rac1 S-palmitoylation, membrane localization, activity, downstream hypertrophic signaling, and concomitant induction of all Rho family small GTPases whereas mice overexpressing an enzymatically dead zDHHC3 mutant show no discernible effect. However, loss of Rac1 or other identified zDHHC3 targets Gαq/11 or galectin-1 does not diminish zDHHC3-induced cardiomyopathy, suggesting multiple effectors and pathways promoting decompensation with sustained zDHHC3 activity. Genetic deletion of Zdhhc3 in combination with Zdhhc7 reduces cardiac hypertrophy during the early response to pressure overload stimulation but not over longer time periods. Indeed, cardiac hypertrophy in response to 2 weeks of angiotensin-II infusion is not diminished by Zdhhc3/7 deletion, again suggesting other S-acyltransferases or signaling mechanisms compensate to promote hypertrophic signaling. Taken together, these data indicate that the activity of zDHHC3 and zDHHC7 at the cardiomyocyte Golgi promote Rac1 signaling and maladaptive cardiac remodeling, but redundant signaling effectors compensate to maintain cardiac hypertrophy with sustained pathological stimulation in the absence of zDHHC3/7.

추출된 의학 개체 (NER)

유형영어 표현한국어 / 풀이UMLS CUI출처등장
해부 cardiomyocyte Rac1 scispacy 1
해부 cardiac scispacy 1
해부 intracellular membranes scispacy 1
해부 heart scispacy 1
해부 membrane scispacy 1
해부 cardiomyocyte Golgi scispacy 1
약물 angiotensin-II scispacy 1
질환 cardiac hypertrophy C1383860
Cardiac Hypertrophy
scispacy 1
질환 cardiac disease C0018799
Heart Diseases
scispacy 1
질환 cardiomyopathy C0878544
Cardiomyopathies
scispacy 1
질환 congestive heart failure C0018802
Congestive heart failure
scispacy 1
질환 decompensation C0231187
Decompensation
scispacy 1
기타 Palmitoylation-dependent scispacy 1
기타 S-acyltransferases scispacy 1
기타 zDHHC scispacy 1
기타 mouse scispacy 1
기타 Cardiomyocyte-specific scispacy 1
기타 mice scispacy 1
기타 Rac1 scispacy 1
기타 Rho scispacy 1
기타 GTPases scispacy 1
기타 galectin-1 scispacy 1
기타 Zdhhc3 scispacy 1
기타 Zdhhc7 scispacy 1
기타 angiotensin-II scispacy 1
기타 Zdhhc3/7 scispacy 1

MeSH Terms

Animals; Mice; Acyltransferases; Cardiomegaly; Cardiomyopathies; Histidine; Lipoylation; Mice, Transgenic; Myocytes, Cardiac; Neuropeptides; rac1 GTP-Binding Protein