Review of Genetic Variants of Butyrylcholinesterase and Their Potential Impact on Human Health

Bharmatisna Anggaharsya Nugraha
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Abstract

Butyrylcholinesterase (BChE) is an enzyme found in plasma and many other parts of the body. It is enzyme that hydrolyses drugs containing ester bonds such as drugs acting at the neuromuscular junction (succinylcholine) and local anaesthetics (procaine). Examination of the gene for mutations or polymorphisms causing the observed biochemical phenotypes has isolated those responsible for all the most widely known variants. The molecular bases of several genetic variants of BChE have been reported, such as the Atypical variant, fluoride-resistant variant, silent variant, K variant, J variant and C5 variant. In general, BChE polymorphisms have been shown to produce enzymes with varying levels of catalytic activity. Genetic variants of human butyrylcholinesterase were one of the first examples in the new field of pharmacogenetics when it was recognized that abnormal response to the succinylcholine was due to a mutated enzyme with low binding affinity. Beside that, variant of BChE has potential impact for Alzheimer disease patology.
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丁基胆碱酯酶基因变异及其对人体健康的潜在影响
丁基胆碱酯酶(BChE)是一种存在于血浆和身体许多其他部位的酶。这种酶水解含有酯键的药物,如作用于神经肌肉接点的药物(琥珀胆碱)和局部麻醉剂(普鲁卡因)。对引起所观察到的生化表型的基因突变或多态性的检查已经分离出那些导致所有最广为人知的变异的基因。目前已报道了BChE的非典型变异、抗氟变异、沉默变异、K变异、J变异和C5变异等遗传变异的分子基础。一般来说,BChE多态性已被证明产生具有不同水平催化活性的酶。人类丁基胆碱酯酶的遗传变异是药物遗传学新领域的第一个例子,当时人们认识到对琥珀胆碱的异常反应是由于一种低结合亲和力的酶突变引起的。除此之外,BChE变异对阿尔茨海默病的病理有潜在的影响。
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