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Lactylation has been recently identified as a new type of posttranslational modification occurring widely on lysine residues of both histone and nonhistone proteins. The acetyltransferase p300 is thought to mediate protein lactylation, yet the cellular concentration of the proposed lactyl-donor, lactyl-coenzyme A, is about 1,000 times lower than that of acetyl-CoA, raising the question of whether p300 is a genuine lactyltransferase. Here, we report that alanyl-tRNA synthetase 1 (AARS1) moonlights as a bona fide lactyltransferase that directly uses lactate and ATP to catalyze protein lactylation. Among the candidate substrates, we focused on the Hippo pathway, which has a well-established role in tumorigenesis. Specifically, AARS1 was found to sense intracellular lactate and translocate into the nucleus to lactylate and activate the YAP-TEAD complex; and AARS1 itself was identified as a Hippo target gene that forms a positive-feedback loop with YAP-TEAD to promote gastric cancer (GC) cell proliferation. Consistently, the expression of AARS1 was found to be upregulated in GC, and elevated AARS1 expression was found to be associated with poor prognosis for patients with GC. Collectively, this work found AARS1 with lactyltransferase activity in vitro and in vivo and revealed how the metabolite lactate is translated into a signal of cell proliferation.
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http://dx.doi.org/10.1172/JCI174587 | DOI Listing |
J Cardiovasc Dev Dis
August 2025
Department of Pediatrics-Division Cardiology, University of Rochester Medical Center, Rochester, NY 14642, USA.
Combined oxidative phosphorylation deficiency type 8 (COXPD8) is an autosomal recessive mitochondrial disorder caused by a mutation of the nuclear encoded mitochondrial alanyl-tRNA synthetase gene (AARS2). Clinical manifestations of COXPD8 include lethal infantile hypertrophic cardiomyopathy, pulmonary hypoplasia, generalized muscle weakness, and neurological involvement. We report a patient with COXPD8 caused by two mutations in the AARS2 gene.
View Article and Find Full Text PDFAdv Sci (Weinh)
July 2025
Department of Hepatobiliary Surgery, The Affiliated Taizhou People's Hospital of Nanjing Medical University, Taizhou School of Clinical Medicine, Nanjing Medical University, Taizhou, Jiangsu, 225300, People's Republic of China.
Hepatocellular carcinoma (HCC) is a common malignant tumor. However, the role of lactic acid-modified proteins in its pathogenesis is unclear. This study determines the distribution of a novel post-translational modification-protein lactylation-in HCC to identify potential targets and obtain mechanistic insights into this disease.
View Article and Find Full Text PDFCureus
June 2025
Pediatric Neurology, Al Jalila Children's Speciality Hospital, Dubai, ARE.
Early developmental delay and progressive neurological symptoms are red flags when evaluating infants in neurology clinics. Early assessment and management are essential to improve outcomes, with genetic testing being a cornerstone. Even if initial genetic results were not suggestive, revisiting the reported variant and comparing it to the newly published reports of different phenotypes helps establish the clinical diagnosis, as the authors report in this case of a 17-month-old child who presented with global developmental delay and hypotonia and was found to have Alanyl-tRNA Synthetase 2 () gene mutation that was deemed as variant of uncertain significance but now is believed to be pathogenic and responsible for her evolving clinical manifestations.
View Article and Find Full Text PDFFetal Pediatr Pathol
July 2025
Division of Pediatric Gastroenterology and Hepatology, Post Graduate Institute of Medical Education and Research, Chandigarh, India.
Alanyl-tRNA synthetase 1 () is a cytosolic enzyme belonging to the Aminoacyl transfer RNA synthetases group that plays a key role in protein translation. Bi-allelic mutations presenting as liver dysfunction are rare. A 10-month-old baby girl presented with upper gastrointestinal bleeding and abdominal distension after a short history of febrile illness.
View Article and Find Full Text PDFRheumatology (Oxford)
July 2025
College of Medicine and Public Health, Flinders University, Bedford Park, SA, Australia.
Objectives: Anti-PL12 autoantibodies are targeted against alanyl-tRNA synthetase, a cytosolic enzyme which plays a vital role in protein synthesis. Clinically, such antibodies are strongly associated with interstitial lung disease (ILD) and confer a poor prognosis.To better understand their molecular composition, anti-PL12 immunoglobulin variable region subfamily expression and their mutational signatures were analysed by mass spectrometry (MS)-based proteomics to provide insights into personalised molecular diagnosis.
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