Evolutionary conservation and post-translational control of S-adenosyl-L-homocysteine hydrolase in land plants
PLOS ONE
Authors: Alegre, Sara; Pascual, Jesus; Trotta, Andrea; Angeleri, Martina; Rahikainen, Moona; Brosche, Mikael; Moffatt, Barbara; Kangasjarvi, Saijaliisa
Abstract
Trans-methylation reactions are intrinsic to cellular metabolism in all living organisms. In land plants, a range of substrate-specific methyltransferases catalyze the methylation of DNA, RNA, proteins, cell wall components and numerous species-specific metabolites, thereby providing means for growth and acclimation in various terrestrial habitats. Trans-methylation reactions consume vast amounts of S-adenosyl-L-methionine (SAM) as a methyl donor in several cellular compartments. The inhibitory reaction by-product, S-adenosyl-L-homocysteine (SAH), is continuously removed by SAH hydrolase (SAHH), which essentially maintains trans-methylation reactions in all living cells. Here we report on the evolutionary conservation and post-translational control of SAHH in land plants. We provide evidence suggesting that SAHH forms oligomeric protein complexes in phylogenetically divergent land plants and that the predominant protein complex is composed by a tetramer of the enzyme. Analysis of light-stress-induced adjustments of SAHH inArabidopsis thalianaandPhyscomitrella patensfurther suggests that regulatory actions may take place on the levels of protein complex formation and phosphorylation of this metabolically central enzyme. Collectively, these data suggest that plant adaptation to terrestrial environments involved evolution of regulatory mechanisms that adjust the trans-methylation machinery in response to environmental cues.
Paracentral acute middle maculopathy (PAMM) associated with ulcerative colitis and coexisting hyperhomocysteinemia: A case report
EUROPEAN JOURNAL OF OPHTHALMOLOGY
Authors: Alkabes, Micol; Vujosevic, Stela; Muraca, Andrea; De Cilla, Stefano
Abstract
Introduction: Paracentral acute middle maculopathy (PAMM) is a tomographic finding of a retinal occlusive vascular disorders with different aetiologies. Despite the well documented triple association among hyper-homocysteine, retinal vein occlusion and PAMM, up to date no reports exist on the development of PAMM in young patients affected by ulcerative colitis (UC). Case description: A multimodal imaging study, including fundus photographs, optical coherence tomography (OCT) B-scans, OCT angiography (OCT-A) and fluorescein and indocyanine green angiography, was performed in a 32-years-old male complaining of acute-onset paracentral scotoma in the right eye. Fundus images demonstrated the typical dark gray area of retinal capillary ischemia, corresponding on OCT B-scans to the hyper-reflective plaques in the INL, and consistent with PAMM lesions.The deep capillary plexus (DCP) was normal on OCT-A. Fluorescein angiography revealed a concurrent branch retinal vein preocclusion and showed capillary drop out parafoveally. Patient's anamnesis was negative except for a 15-years history of UC and use of acetylsalicylic acid (ASS). At the time of presentation, UC was quiescent, but new blood tests revealed concomitant high values of homocysteinemia requiring oral vitamin B12 and folate supplementation. Two months later PAMM lesions had disappeared on OCT B-scans and a retinal thinning at the level of the inner nuclear layer (INL) was visible. The DCP on OCT-A remained unchanged without any sign of capillary ischemia. Conclusions: Although no definitive evidence directly links UC with PAMM, the latter should be suspected in young patients affected by IBD with coexisting hyper-homocysteinemia and unexplained visual symptoms.