2024
Clinical spectrum of Transthyretin amyloidogenic mutations among diverse population origins
De Lillo A, Pathak G, Low A, De Angelis F, Abou Alaiwi S, Miller E, Fuciarelli M, Polimanti R. Clinical spectrum of Transthyretin amyloidogenic mutations among diverse population origins. Human Genomics 2024, 18: 31. PMID: 38523305, PMCID: PMC10962184, DOI: 10.1186/s40246-024-00596-7.Peer-Reviewed Original ResearchConceptsCardiac congenital anomaliesAmyloidogenic mutationsCross-ancestry meta-analysisCongenital anomaliesComplex genotype-phenotype correlationsVal122Ile mutationGenotype-phenotype correlationPeripheral nerve disordersHereditary form of amyloidosisAncestry-specificCross-ancestryEuropean-descent individualsEast AsiansTTR-related amyloidosisIndividuals of African descentPopulation originClinical presentationAtrioventricular blockClinical spectrumDelayed diagnosisTTR mutationsAfrican descentNerve disordersTransthyretin mutationMutations
2006
Activation of AMPK α- and γ-isoform complexes in the intact ischemic rat heart
Li J, Coven DL, Miller EJ, Hu X, Young ME, Carling D, Sinusas AJ, Young LH. Activation of AMPK α- and γ-isoform complexes in the intact ischemic rat heart. AJP Heart And Circulatory Physiology 2006, 291: h1927-h1934. PMID: 16648175, DOI: 10.1152/ajpheart.00251.2006.Peer-Reviewed Original ResearchConceptsAMPK activityAMPK complexAlpha subunit activationDifferent subunit isoformsSerine-threonine kinaseCellular metabolic processesGamma subunit isoformsRegulatory betaAlpha-subunit contentHeterotrimeric complexProtein kinaseAMPK αMultiple isoformsKinase activitySubunit isoformsMetabolic processesAMPK phosphorylationAMPKIsoformsPhysiological regulationKinaseMutationsComplexesKey rolePathophysiological importance