Diones Bueno, Michael K E Schäfer, Sudena Wang, Michael J Schmeisser, Axel Methner
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This demonstrates the capacity of the family for interactions with various classes of proteins. NECAB proteins exhibit distinct subcellular localizations: NECAB1 is found in the nucleus and cytosol, NECAB2 resides in endosomes and the plasma membrane, and NECAB3 is present in the endoplasmic reticulum and Golgi apparatus. The antibiotic biosynthesis monooxygenase domain, an evolutionarily ancient component, is akin to atypical heme oxygenases in prokaryotes but is not well-characterized in vertebrates. Prokaryotic antibiotic biosynthesis monooxygenase domains typically form dimers, suggesting that calcium-mediated conformational changes in NECAB proteins may induce antibiotic biosynthesis monooxygenase domain dimerization, potentially activating some enzymatic properties. However, the substrate for this enzymatic activity remains uncertain. Alternatively, calcium-mediated conformational changes might influence protein interactions or the subcellular localization of NECAB proteins by controlling the availability of protein-protein interaction domains situated between the EF hands and the antibiotic biosynthesis monooxygenase domain. This review summarizes what is known about genomic organization, tissue expression, intracellular localization, interaction partners, and the physiological and pathophysiological role of the NECAB family.</p>","PeriodicalId":19113,"journal":{"name":"Neural Regeneration Research","volume":" ","pages":"1236-1243"},"PeriodicalIF":5.9000,"publicationDate":"2025-05-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"NECAB family of neuronal calcium-binding proteins in health and disease.\",\"authors\":\"Diones Bueno, Michael K E Schäfer, Sudena Wang, Michael J Schmeisser, Axel Methner\",\"doi\":\"10.4103/NRR.NRR-D-24-00094\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>The N-terminal EF-hand calcium-binding proteins 1-3 (NECAB1-3) constitute a family of predominantly neuronal proteins characterized by the presence of at least one EF-hand calcium-binding domain and a functionally less well characterized C-terminal antibiotic biosynthesis monooxygenase domain. All three family members were initially discovered due to their interactions with other proteins. NECAB1 associates with synaptotagmin-1, a critical neuronal protein involved in membrane trafficking and synaptic vesicle exocytosis. NECAB2 interacts with predominantly striatal G-protein-coupled receptors, while NECAB3 partners with amyloid-β A4 precursor protein-binding family A members 2 and 3, key regulators of amyloid-β production. This demonstrates the capacity of the family for interactions with various classes of proteins. NECAB proteins exhibit distinct subcellular localizations: NECAB1 is found in the nucleus and cytosol, NECAB2 resides in endosomes and the plasma membrane, and NECAB3 is present in the endoplasmic reticulum and Golgi apparatus. The antibiotic biosynthesis monooxygenase domain, an evolutionarily ancient component, is akin to atypical heme oxygenases in prokaryotes but is not well-characterized in vertebrates. Prokaryotic antibiotic biosynthesis monooxygenase domains typically form dimers, suggesting that calcium-mediated conformational changes in NECAB proteins may induce antibiotic biosynthesis monooxygenase domain dimerization, potentially activating some enzymatic properties. However, the substrate for this enzymatic activity remains uncertain. Alternatively, calcium-mediated conformational changes might influence protein interactions or the subcellular localization of NECAB proteins by controlling the availability of protein-protein interaction domains situated between the EF hands and the antibiotic biosynthesis monooxygenase domain. 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引用次数: 0
摘要
摘要:N末端EF-手钙结合蛋白1-3(NECAB1-3)构成了一个主要由神经元蛋白组成的家族,其特征是至少存在一个EF-手钙结合结构域和一个功能上不太明显的C末端抗生素生物合成单加氧酶结构域。这三个家族成员最初都是通过与其他蛋白质的相互作用而被发现的。NECAB1 与突触标记蛋白-1 相关联,突触标记蛋白-1 是一种关键的神经元蛋白,参与膜贩运和突触囊泡的外泌。NECAB2 主要与纹状体 G 蛋白偶联受体相互作用,而 NECAB3 则与淀粉样β-A4 前体蛋白结合家族 A 成员 2 和 3(β-淀粉样蛋白生成的关键调节因子)合作。这表明该家族有能力与各类蛋白质相互作用。NECAB 蛋白具有不同的亚细胞定位:NECAB1 存在于细胞核和细胞膜中,NECAB2 存在于内体和质膜中,NECAB3 存在于内质网和高尔基体中。抗生素生物合成单加氧酶结构域是一个进化古老的组成部分,类似于原核生物中的非典型血红素加氧酶,但在脊椎动物中还没有得到很好的描述。原核生物抗生素生物合成单加氧酶结构域通常形成二聚体,这表明钙介导的 NECAB 蛋白构象变化可能诱导抗生素生物合成单加氧酶结构域二聚化,从而可能激活某些酶的特性。不过,这种酶活性的底物仍不确定。另外,钙介导的构象变化可能通过控制位于 EF 手和抗生素生物合成单加氧酶结构域之间的蛋白质-蛋白质相互作用结构域的可用性,影响蛋白质相互作用或 NECAB 蛋白的亚细胞定位。本综述总结了有关 NECAB 家族的基因组组织、组织表达、细胞内定位、相互作用伙伴以及生理和病理生理学作用的已知信息。
NECAB family of neuronal calcium-binding proteins in health and disease.
The N-terminal EF-hand calcium-binding proteins 1-3 (NECAB1-3) constitute a family of predominantly neuronal proteins characterized by the presence of at least one EF-hand calcium-binding domain and a functionally less well characterized C-terminal antibiotic biosynthesis monooxygenase domain. All three family members were initially discovered due to their interactions with other proteins. NECAB1 associates with synaptotagmin-1, a critical neuronal protein involved in membrane trafficking and synaptic vesicle exocytosis. NECAB2 interacts with predominantly striatal G-protein-coupled receptors, while NECAB3 partners with amyloid-β A4 precursor protein-binding family A members 2 and 3, key regulators of amyloid-β production. This demonstrates the capacity of the family for interactions with various classes of proteins. NECAB proteins exhibit distinct subcellular localizations: NECAB1 is found in the nucleus and cytosol, NECAB2 resides in endosomes and the plasma membrane, and NECAB3 is present in the endoplasmic reticulum and Golgi apparatus. The antibiotic biosynthesis monooxygenase domain, an evolutionarily ancient component, is akin to atypical heme oxygenases in prokaryotes but is not well-characterized in vertebrates. Prokaryotic antibiotic biosynthesis monooxygenase domains typically form dimers, suggesting that calcium-mediated conformational changes in NECAB proteins may induce antibiotic biosynthesis monooxygenase domain dimerization, potentially activating some enzymatic properties. However, the substrate for this enzymatic activity remains uncertain. Alternatively, calcium-mediated conformational changes might influence protein interactions or the subcellular localization of NECAB proteins by controlling the availability of protein-protein interaction domains situated between the EF hands and the antibiotic biosynthesis monooxygenase domain. This review summarizes what is known about genomic organization, tissue expression, intracellular localization, interaction partners, and the physiological and pathophysiological role of the NECAB family.
期刊介绍:
Neural Regeneration Research (NRR) is the Open Access journal specializing in neural regeneration and indexed by SCI-E and PubMed. The journal is committed to publishing articles on basic pathobiology of injury, repair and protection to the nervous system, while considering preclinical and clinical trials targeted at improving traumatically injuried patients and patients with neurodegenerative diseases.