Literature DB >> 24111795

Hypoxamirs and mitochondrial metabolism.

Katherine A Cottrill1, Stephen Y Chan, Joseph Loscalzo.   

Abstract

SIGNIFICANCE: Chronic hypoxia can drive maladaptive responses in numerous organ systems, leading to a multitude of chronic mammalian diseases. Oxygen homeostasis is intimately linked with mitochondrial metabolism, and dysfunction in these systems can combine to form the backbone of hypoxic-ischemic injury in multiple tissue beds. Increased appreciation of the crucial roles of hypoxia-associated miRNA (hypoxamirs) in metabolism adds a new dimension to our understanding of the regulation of hypoxia-induced disease. RECENT ADVANCES: Myriad factors related to glycolysis (e.g., aldolase A and hexokinase II), tricarboxylic acid cycle function (e.g., glutaminase and iron-sulfur cluster assembly protein 1/2), and apoptosis (e.g., p53) have been recently implicated as targets of hypoxamirs. In addition, several hypoxamirs have been implicated in the regulation of the master transcription factor of hypoxia, hypoxia-inducible factor-1α, clarifying how the cellular program of hypoxia is sustained and resolved. CRITICAL ISSUES: Central to the discussion of metabolic change in hypoxia is the Warburg effect, a shift toward anaerobic metabolism that persists after normal oxygen levels have been restored. Many newly discovered targets of hypoxia-driven microRNA converge on pathways known to be involved in this pathological phenomenon and the apoptosis-resistant phenotype associated with it. FUTURE DIRECTIONS: The often synergistic functions of miRNA may make them ideal therapeutic targets. The use of antisense inhibitors is currently being considered in diseases in which hypoxia and metabolic dysregulation predominate. In addition, exploration of pleiotripic miRNA functions will likely continue to offer unique insights into the mechanistic relationships of their downstream target pathways and associated hypoxic phenotypes.

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Year:  2014        PMID: 24111795      PMCID: PMC4142855          DOI: 10.1089/ars.2013.5641

Source DB:  PubMed          Journal:  Antioxid Redox Signal        ISSN: 1523-0864            Impact factor:   8.401


  100 in total

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Authors:  Sébastien Bonnet; Stephen L Archer; Joan Allalunis-Turner; Alois Haromy; Christian Beaulieu; Richard Thompson; Christopher T Lee; Gary D Lopaschuk; Lakshmi Puttagunta; Sandra Bonnet; Gwyneth Harry; Kyoko Hashimoto; Christopher J Porter; Miguel A Andrade; Bernard Thebaud; Evangelos D Michelakis
Journal:  Cancer Cell       Date:  2007-01       Impact factor: 31.743

2.  MiR-204 regulate cardiomyocyte autophagy induced by hypoxia-reoxygenation through LC3-II.

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Journal:  Int J Cardiol       Date:  2011-02-12       Impact factor: 4.164

3.  miR-210 targets iron-sulfur cluster scaffold homologue in human trophoblast cell lines: siderosis of interstitial trophoblasts as a novel pathology of preterm preeclampsia and small-for-gestational-age pregnancies.

Authors:  Deug-Chan Lee; Roberto Romero; Jung-Sun Kim; Adi L Tarca; Daniel Montenegro; Beth L Pineles; Ernest Kim; JoonHo Lee; Sun Young Kim; Sorin Draghici; Pooja Mittal; Juan Pedro Kusanovic; Tinnakorn Chaiworapongsa; Sonia S Hassan; Chong Jai Kim
Journal:  Am J Pathol       Date:  2011-08       Impact factor: 4.307

4.  Gemcitabine sensitivity can be induced in pancreatic cancer cells through modulation of miR-200 and miR-21 expression by curcumin or its analogue CDF.

Authors:  Shadan Ali; Aamir Ahmad; Sanjeev Banerjee; Subhash Padhye; Kristin Dominiak; Jacqueline M Schaffert; Zhiwei Wang; Philip A Philip; Fazlul H Sarkar
Journal:  Cancer Res       Date:  2010-04-13       Impact factor: 12.701

5.  miR-29a and miR-29b contribute to pancreatic beta-cell-specific silencing of monocarboxylate transporter 1 (Mct1).

Authors:  Timothy J Pullen; Gabriela da Silva Xavier; Gavin Kelsey; Guy A Rutter
Journal:  Mol Cell Biol       Date:  2011-06-06       Impact factor: 4.272

6.  p53 and TIGAR regulate cardiac myocyte energy homeostasis under hypoxic stress.

Authors:  Masaki Kimata; Satoaki Matoba; Eri Iwai-Kanai; Hideo Nakamura; Atsushi Hoshino; Mikihiko Nakaoka; Maki Katamura; Yoshifumi Okawa; Yuichiro Mita; Mitsuhiko Okigaki; Koji Ikeda; Tetsuya Tatsumi; Hiroaki Matsubara
Journal:  Am J Physiol Heart Circ Physiol       Date:  2010-10-08       Impact factor: 4.733

7.  The expression of Argonaute2 and related microRNA biogenesis proteins in normal and hypoxic trophoblasts.

Authors:  Rogier B Donker; Jean-François Mouillet; D Michael Nelson; Yoel Sadovsky
Journal:  Mol Hum Reprod       Date:  2007-02-27       Impact factor: 4.025

8.  Differential expression profile of microRNAs in human placentas from preeclamptic pregnancies vs normal pregnancies.

Authors:  Xiao-ming Zhu; Tao Han; Ian L Sargent; Guo-wu Yin; Yuan-qing Yao
Journal:  Am J Obstet Gynecol       Date:  2009-03-14       Impact factor: 8.661

9.  Diversity in mitochondrial function explains differences in vascular oxygen sensing.

Authors:  Evangelos D Michelakis; Vaclav Hampl; Ali Nsair; XiCheng Wu; Gwyneth Harry; Al Haromy; Rachita Gurtu; Stephen L Archer
Journal:  Circ Res       Date:  2002-06-28       Impact factor: 17.367

10.  Hypoxia response elements in the aldolase A, enolase 1, and lactate dehydrogenase A gene promoters contain essential binding sites for hypoxia-inducible factor 1.

Authors:  G L Semenza; B H Jiang; S W Leung; R Passantino; J P Concordet; P Maire; A Giallongo
Journal:  J Biol Chem       Date:  1996-12-20       Impact factor: 5.157

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  11 in total

1.  Patients with obstructive sleep apnea present with chronic upregulation of serum HIF-1α protein.

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Journal:  J Clin Sleep Med       Date:  2020-10-15       Impact factor: 4.062

Review 2.  Targeting the ROS-HIF-1-endothelin axis as a therapeutic approach for the treatment of obstructive sleep apnea-related cardiovascular complications.

Authors:  Elise Belaidi; Jessica Morand; Emmanuelle Gras; Jean-Louis Pépin; Diane Godin-Ribuot
Journal:  Pharmacol Ther       Date:  2016-08-02       Impact factor: 12.310

Review 3.  Adaptions to Hypoxia and Redox Stress: Essential Concepts Confounded by Misleading Terminology.

Authors:  Joseph Loscalzo
Journal:  Circ Res       Date:  2016-08-05       Impact factor: 17.367

Review 4.  Interplay of mitochondrial metabolism and microRNAs.

Authors:  Julian Geiger; Louise T Dalgaard
Journal:  Cell Mol Life Sci       Date:  2016-08-25       Impact factor: 9.261

5.  microRNAs in ischaemic cardiovascular diseases.

Authors:  Simona Greco; Germana Zaccagnini; Christine Voellenkle; Fabio Martelli
Journal:  Eur Heart J Suppl       Date:  2016-04-29       Impact factor: 1.803

6.  Prolyl hydroxylation regulates protein degradation, synthesis, and splicing in human induced pluripotent stem cell-derived cardiomyocytes.

Authors:  Andrea Stoehr; Yanqin Yang; Sajni Patel; Alicia M Evangelista; Angel Aponte; Guanghui Wang; Poching Liu; Jennifer Boylston; Philip H Kloner; Yongshun Lin; Marjan Gucek; Jun Zhu; Elizabeth Murphy
Journal:  Cardiovasc Res       Date:  2016-04-19       Impact factor: 10.787

7.  Dynamin 2 along with microRNA-199a reciprocally regulate hypoxia-inducible factors and ovarian cancer metastasis.

Authors:  Hemant P Joshi; Indira V Subramanian; Erica K Schnettler; Goutam Ghosh; Rajesha Rupaimoole; Colleen Evans; Manju Saluja; Yawu Jing; Ivan Cristina; Sabita Roy; Yan Zeng; Vijay H Shah; Anil K Sood; Sundaram Ramakrishnan
Journal:  Proc Natl Acad Sci U S A       Date:  2014-03-24       Impact factor: 11.205

Review 8.  Mitochondria signaling pathways in allergic asthma.

Authors:  Ling Qian; Entezar Mehrabi Nasab; Seyyede Masoume Athari; Seyyed Shamsadin Athari
Journal:  J Investig Med       Date:  2022-02-15       Impact factor: 3.235

9.  Fibroblasts from patients with major depressive disorder show distinct transcriptional response to metabolic stressors.

Authors:  K A Garbett; A Vereczkei; S Kálmán; L Wang; Ž Korade; R C Shelton; K Mirnics
Journal:  Transl Psychiatry       Date:  2015-03-10       Impact factor: 6.222

Review 10.  MicroRNAs Regulate Mitochondrial Function in Cerebral Ischemia-Reperfusion Injury.

Authors:  Yue Hu; Hao Deng; Shixin Xu; Junping Zhang
Journal:  Int J Mol Sci       Date:  2015-10-20       Impact factor: 5.923

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