Identification of Celastramycin as a Novel Therapeutic Agent for Pulmonary Arterial Hypertension.


Journal

Circulation research
ISSN: 1524-4571
Titre abrégé: Circ Res
Pays: United States
ID NLM: 0047103

Informations de publication

Date de publication:
19 07 2019
Historique:
pubmed: 15 6 2019
medline: 6 5 2020
entrez: 15 6 2019
Statut: ppublish

Résumé

Pulmonary arterial hypertension (PAH) is characterized by enhanced proliferation of pulmonary artery smooth muscle cells (PASMCs) accompanying increased production of inflammatory factors and adaptation of the mitochondrial metabolism to a hyperproliferative state. However, all the drugs in clinical use target pulmonary vascular dilatation, which may not be effective for patients with advanced PAH. We aimed to discover a novel drug for PAH that inhibits PASMC proliferation. We screened 5562 compounds from original library using high-throughput screening system to discover compounds which inhibit proliferation of PASMCs from patients with PAH (PAH-PASMCs). We found that celastramycin, a benzoyl pyrrole-type compound originally found in a bacteria extract, inhibited the proliferation of PAH-PASMCs in a dose-dependent manner with relatively small effects on PASMCs from healthy donors. Then, we made 25 analogs of celastramycin and selected the lead compound, which significantly inhibited cell proliferation of PAH-PASMCs and reduced cytosolic reactive oxygen species levels. Mechanistic analysis demonstrated that celastramycin reduced the protein levels of HIF-1α (hypoxia-inducible factor 1α), which impairs aerobic metabolism, and κB (nuclear factor-κB), which induces proinflammatory signals, in PAH-PASMCs, leading to reduced secretion of inflammatory cytokine. Importantly, celastramycin treatment reduced reactive oxygen species levels in PAH-PASMCs with increased protein levels of Nrf2 (nuclear factor erythroid 2-related factor 2), a master regulator of cellular response against oxidative stress. Furthermore, celastramycin treatment improved mitochondrial energy metabolism with recovered mitochondrial network formation in PAH-PASMCs. Moreover, these celastramycin-mediated effects were regulated by ZFC3H1 (zinc finger C3H1 domain-containing protein), a binding partner of celastramycin. Finally, celastramycin treatment ameliorated pulmonary hypertension in 3 experimental animal models, accompanied by reduced inflammatory changes in the lungs. These results indicate that celastramycin ameliorates pulmonary hypertension, reducing excessive proliferation of PAH-PASMCs with less inflammation and reactive oxygen species levels, and recovered mitochondrial energy metabolism. Thus, celastramycin is a novel drug for PAH that targets antiproliferative effects on PAH-PASMCs.

Identifiants

pubmed: 31195886
doi: 10.1161/CIRCRESAHA.119.315229
doi:

Substances chimiques

Cytokines 0
HIF1A protein, human 0
Hypoxia-Inducible Factor 1, alpha Subunit 0
Indoles 0
NF-E2-Related Factor 2 0
NF-kappa B 0
NFE2L2 protein, human 0
Naphthoquinones 0
Pyrroles 0
Reactive Oxygen Species 0
Resorcinols 0
Transcription Factors 0
ZFC3H1 protein, human 0
celastramycin A 0
celastramycin B 0
Semaxinib 71IA9S35AJ
Monocrotaline 73077K8HYV

Types de publication

Journal Article Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

309-327

Auteurs

Ryo Kurosawa (R)

From the Department of Cardiovascular Medicine (R.K., K.S., N.K., E.A.M., M.A.H.S., J.O., T.S., S.S., M.N., K.N., S.M., H.S.), Sendai, Japan.
Japan Society for the Promotion of Science, Tokyo, Japan (R.K.).

Kimio Satoh (K)

From the Department of Cardiovascular Medicine (R.K., K.S., N.K., E.A.M., M.A.H.S., J.O., T.S., S.S., M.N., K.N., S.M., H.S.), Sendai, Japan.

Nobuhiro Kikuchi (N)

From the Department of Cardiovascular Medicine (R.K., K.S., N.K., E.A.M., M.A.H.S., J.O., T.S., S.S., M.N., K.N., S.M., H.S.), Sendai, Japan.

Haruhisa Kikuchi (H)

Tohoku University Graduate School of Pharmaceutical Sciences, Sendai, Japan (H.K., K.K., Y.M., T.D., J.A., Y.O.).

Daisuke Saigusa (D)

Department of Integrative Genomics, Tohoku University Tohoku Medical Megabank Organizaition (D.S., A.U., M.Y.), Sendai, Japan.
Department of Medical Biochemistry, Tohoku University Graduate School of Medicine (D.S., A.U., M.Y.), Sendai, Japan.

Md Elias Al-Mamun (ME)

From the Department of Cardiovascular Medicine (R.K., K.S., N.K., E.A.M., M.A.H.S., J.O., T.S., S.S., M.N., K.N., S.M., H.S.), Sendai, Japan.

Mohammad A H Siddique (MAH)

From the Department of Cardiovascular Medicine (R.K., K.S., N.K., E.A.M., M.A.H.S., J.O., T.S., S.S., M.N., K.N., S.M., H.S.), Sendai, Japan.

Junichi Omura (J)

From the Department of Cardiovascular Medicine (R.K., K.S., N.K., E.A.M., M.A.H.S., J.O., T.S., S.S., M.N., K.N., S.M., H.S.), Sendai, Japan.

Taijyu Satoh (T)

From the Department of Cardiovascular Medicine (R.K., K.S., N.K., E.A.M., M.A.H.S., J.O., T.S., S.S., M.N., K.N., S.M., H.S.), Sendai, Japan.

Shinichiro Sunamura (S)

From the Department of Cardiovascular Medicine (R.K., K.S., N.K., E.A.M., M.A.H.S., J.O., T.S., S.S., M.N., K.N., S.M., H.S.), Sendai, Japan.

Masamichi Nogi (M)

From the Department of Cardiovascular Medicine (R.K., K.S., N.K., E.A.M., M.A.H.S., J.O., T.S., S.S., M.N., K.N., S.M., H.S.), Sendai, Japan.

Kazuhiko Numano (K)

From the Department of Cardiovascular Medicine (R.K., K.S., N.K., E.A.M., M.A.H.S., J.O., T.S., S.S., M.N., K.N., S.M., H.S.), Sendai, Japan.

Satoshi Miyata (S)

From the Department of Cardiovascular Medicine (R.K., K.S., N.K., E.A.M., M.A.H.S., J.O., T.S., S.S., M.N., K.N., S.M., H.S.), Sendai, Japan.

Akira Uruno (A)

Department of Integrative Genomics, Tohoku University Tohoku Medical Megabank Organizaition (D.S., A.U., M.Y.), Sendai, Japan.
Department of Medical Biochemistry, Tohoku University Graduate School of Medicine (D.S., A.U., M.Y.), Sendai, Japan.

Kuniyuki Kano (K)

Tohoku University Graduate School of Pharmaceutical Sciences, Sendai, Japan (H.K., K.K., Y.M., T.D., J.A., Y.O.).

Yotaro Matsumoto (Y)

Tohoku University Graduate School of Pharmaceutical Sciences, Sendai, Japan (H.K., K.K., Y.M., T.D., J.A., Y.O.).

Takayuki Doi (T)

Tohoku University Graduate School of Pharmaceutical Sciences, Sendai, Japan (H.K., K.K., Y.M., T.D., J.A., Y.O.).

Junken Aoki (J)

Tohoku University Graduate School of Pharmaceutical Sciences, Sendai, Japan (H.K., K.K., Y.M., T.D., J.A., Y.O.).

Yoshiteru Oshima (Y)

Tohoku University Graduate School of Pharmaceutical Sciences, Sendai, Japan (H.K., K.K., Y.M., T.D., J.A., Y.O.).

Masayuki Yamamoto (M)

Department of Integrative Genomics, Tohoku University Tohoku Medical Megabank Organizaition (D.S., A.U., M.Y.), Sendai, Japan.
Department of Medical Biochemistry, Tohoku University Graduate School of Medicine (D.S., A.U., M.Y.), Sendai, Japan.

Hiroaki Shimokawa (H)

From the Department of Cardiovascular Medicine (R.K., K.S., N.K., E.A.M., M.A.H.S., J.O., T.S., S.S., M.N., K.N., S.M., H.S.), Sendai, Japan.

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