Vitamin B 12 is an organometallic compound with important metabolic derivatives that act as cofactors of certain enzymes,which have been grouped into three subfamilies depending on their cofactors.Among them,methylmal...Vitamin B 12 is an organometallic compound with important metabolic derivatives that act as cofactors of certain enzymes,which have been grouped into three subfamilies depending on their cofactors.Among them,methylmalonyl-CoA mutase (MCM) has been extensively studied.This enzyme catalyzes the reversible isomerization of L-methylmalonyl-CoA to succinyl-CoA using adenosylcobalamin (AdoCbl) as a cofactor participating in the generation of radicals that allow isomerization of the substrate.The crystal structure of MCM determined in Propionibacterium freudenreichii var.shermanii has helped to elucidate the role of this cofactor AdoCbl in the reaction to specify the mechanism by which radicals are generated from the coenzyme and to clarify the interactions between the enzyme,coenzyme,and substrate.The existence of human methylmalonic acidemia (MMA) due to the presence of mutations in MCM shows the importance of its role in metabolism.The recent crystallization of the human MCM has shown that despite being similar to the bacterial protein,there are significant differences in the structural organization of the two proteins.Recent studies have identified the involvement of an accessory protein called MMAA,which interacts with MCM to prevent MCM's inactivation or acts as a chaperone to promote regeneration of inactivated enzyme.The interdisciplinary studies using this protein as a model in different organisms have helped to elucidate the mechanism of action of this isomerase,the impact of mutations at a functional level and their repercussion in the development and progression of MMA in humans.It is still necessary to study the mechanisms involved in more detail using new methods.展开更多
Background:Isolated methylmalonic acidemia is a rare autosomal recessive metabolic disorder mostly caused by mutations in the methylmalonyl coenzyme A mutase (MCM) gene (MUT).This study aimed to verify whether missens...Background:Isolated methylmalonic acidemia is a rare autosomal recessive metabolic disorder mostly caused by mutations in the methylmalonyl coenzyme A mutase (MCM) gene (MUT).This study aimed to verify whether missense mutations in MUT in Chinese patients affect the stability and enzymatic activity of MCM.Methods:Eight Chinese patients were identified with novel mutations.Plasmids carrying the wild-type and mutated MUT cDNA were constructed and transfected into HEK293T cells for functional analyses.The expression and activity of MCM were determined by western blot and ultra-performance liquid chromatography,respectively.Results:All patients had high levels of blood propionylcarnitine and urinary methylmalonyl acid.By the end of the study,two patients were lost to follow-up,three died,and three survived with mental retardation.Compared to the wild-type protein,the expression levels of all missense mutations of in vitro MCM protein were decreased (P<0.05) except those for I597R,and the MCM activity of the mutations was reduced in a permissive assay.Conclusion:The missense mutations L140P,A141T,G161V,W309G,I505T,Q514K,I597R and G723D affected the stability and enzymatic activity of MCM,indicating that they had a disease-causing capacity.展开更多
基金Project (No.IN208411) partially supported by the PAPIIT-UNAM of Mexico
文摘Vitamin B 12 is an organometallic compound with important metabolic derivatives that act as cofactors of certain enzymes,which have been grouped into three subfamilies depending on their cofactors.Among them,methylmalonyl-CoA mutase (MCM) has been extensively studied.This enzyme catalyzes the reversible isomerization of L-methylmalonyl-CoA to succinyl-CoA using adenosylcobalamin (AdoCbl) as a cofactor participating in the generation of radicals that allow isomerization of the substrate.The crystal structure of MCM determined in Propionibacterium freudenreichii var.shermanii has helped to elucidate the role of this cofactor AdoCbl in the reaction to specify the mechanism by which radicals are generated from the coenzyme and to clarify the interactions between the enzyme,coenzyme,and substrate.The existence of human methylmalonic acidemia (MMA) due to the presence of mutations in MCM shows the importance of its role in metabolism.The recent crystallization of the human MCM has shown that despite being similar to the bacterial protein,there are significant differences in the structural organization of the two proteins.Recent studies have identified the involvement of an accessory protein called MMAA,which interacts with MCM to prevent MCM's inactivation or acts as a chaperone to promote regeneration of inactivated enzyme.The interdisciplinary studies using this protein as a model in different organisms have helped to elucidate the mechanism of action of this isomerase,the impact of mutations at a functional level and their repercussion in the development and progression of MMA in humans.It is still necessary to study the mechanisms involved in more detail using new methods.
文摘Background:Isolated methylmalonic acidemia is a rare autosomal recessive metabolic disorder mostly caused by mutations in the methylmalonyl coenzyme A mutase (MCM) gene (MUT).This study aimed to verify whether missense mutations in MUT in Chinese patients affect the stability and enzymatic activity of MCM.Methods:Eight Chinese patients were identified with novel mutations.Plasmids carrying the wild-type and mutated MUT cDNA were constructed and transfected into HEK293T cells for functional analyses.The expression and activity of MCM were determined by western blot and ultra-performance liquid chromatography,respectively.Results:All patients had high levels of blood propionylcarnitine and urinary methylmalonyl acid.By the end of the study,two patients were lost to follow-up,three died,and three survived with mental retardation.Compared to the wild-type protein,the expression levels of all missense mutations of in vitro MCM protein were decreased (P<0.05) except those for I597R,and the MCM activity of the mutations was reduced in a permissive assay.Conclusion:The missense mutations L140P,A141T,G161V,W309G,I505T,Q514K,I597R and G723D affected the stability and enzymatic activity of MCM,indicating that they had a disease-causing capacity.