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The requirement for cobalt in vitamin B-12: A paradigm for protein metalation

机译:维生素B-12中钴的要求:蛋白质金属化的范式

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摘要

Vitamin B-12, cobalamin, is a cobalt-containing ring-contracted modified tetrapyrrole that represents one of the most complex small molecules made by nature. In prokaryotes it is utilised as a cofactor, coenzyme, light sensor and gene regulator yet has a restricted role in assisting only two enzymes within specific eukaryotes including mammals. This deployment disparity is reflected in another unique attribute of vitamin B-12 in that its biosynthesis is limited to only certain prokaryotes, with synthesisers pivotal in establishing mutualistic microbial communities. The core component of cobalamin is the corrin macrocycle that acts as the main ligand for the cobalt. Within this review we investigate why cobalt is paired specifically with the corrin ring, how cobalt is inserted during the biosynthetic process, how cobalt is made available within the cell and explore the cellular control of cobalt and cobalamin levels. The partitioning of cobalt for cobalamin biosynthesis exemplifies how cells assist metalation.
机译:维生素B-12,钴胺素是一种含钴环凝聚的修饰四吡咯,代表了本质上最复杂的小分子之一。在原核生物中,它用作辅助因子,辅酶,光传感器和基因调节剂,但在辅助仅在包括哺乳动物的特定真核内的只有两种酶的局部作用具有局限性的作用。该部署视差反映在维生素B-12的另一个独特属性中,因为其生物合成仅限于某些原核生物,其中合成仪在建立互动的微生物社区中的枢转。 Cobalamin的核心组分是Corrin宏系,其作为钴的主要配体。在本次综述中,我们调查为什么钴与CORRIN环一起配对,如何在生物合成过程中插入钴,如何在细胞内提供钴,并探讨钴和钴胺蛋白水平的细胞控制。 Cobalamin Biosynthesis的钴的分区举例说明了细胞如何协助金属化。

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