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首页> 外文期刊>Biological & pharmaceutical bulletin >Abnormal Amino Acid Profiles of Blood and Cerebrospinal Fluid from Cystathionine beta-Synthase-Deficient Mice, an Animal Model of Homocystinuria
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Abnormal Amino Acid Profiles of Blood and Cerebrospinal Fluid from Cystathionine beta-Synthase-Deficient Mice, an Animal Model of Homocystinuria

机译:来自胱硫脲β-合酶缺陷小鼠的血液和脑脊液的异常氨基酸谱,同性恋尿的动物模型

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Mental retardation is the most common feature among inborn errors of amino acid metabolism. Patients with homocystinuria/homocysteinemia caused by cystathionine beta-synthase (CBS) deficiency suffer from thromboembolism and mental retardation from early ages; therefore, detection by newborn screening is performed. Furthermore, elevated levels of serum homocysteine during pregnancy are associated with the occurrence of neural tube defects (NTDs) in newborns. However, the causes of such central nervous system (CNS) defects are unknown. We found previously impaired learning abilities in Cbs-deficient (Cbs(-/-)) mice (but not NTD births). Here, we investigated the amino acid profiles of serum and cerebrospinal fluid (CSF) from Cbs(-/-) mice. Mice deficient in cystathionine gamma-lyase (Cth), a downstream enzyme of CBS in transsulfuration, as well as wild-type mice, were analyzed as controls. Cbs(-/-) and Cth(-/-) mice were smaller than wild type mice, and CSF yields in Cbs(-/-) mice were lower than the others. CSF amino acid levels were generally lower than those in serum, and compared with the dramatic amino acid level alterations in Cbs(-/-) mouse serum, alterations in CSF were less apparent. However, marked upregulation (versus wild-type) of aspartic acid/asparagine (Asp/Asn), glutamine (Gin), serine (Ser), threonine (Thr), phenylalanine (Phe), tyrosine (Tyr), methionine (Met), total homocysteine, and citrulline, and downregulation of lysine (Lys) were found in Cbs(-/-) mouse CSF. Because similar regulation of total homocysteine/citrulline/Lys was observed in the CSF of Cth(-/-) mice, which are free of CNS dysfunction, the reduced CSF volumes and the level changes of other amino acids could be relevant to Cbs(-/-)-specific CNS defects.
机译:精神发育迟滞是氨基酸新陈代谢的天生误差中最常见的特征。由胱天蛋白酶β-合酶(CBS)缺乏引起的患有同型患者/同型胱抑素血症的患者患有早期血栓栓塞和精神发育迟滞;因此,进行新生儿筛选的检测。此外,妊娠期间血清同型半胱氨酸的升高与新生儿中神经管缺陷(NTDS)的发生有关。然而,这种中枢神经系统(CNS)缺陷的原因是未知的。我们发现以前在CBS缺陷(CBS( - / - ))小鼠(但不是NTD诞生)中的学习能力受损。在此,我们研究了来自CBS(/ - / - )小鼠的血清和脑脊液(CSF)的氨基酸谱。缺乏胱硫醚γ-裂解酶(CTH)的小鼠,分析过铀饱和度的CBS下游酶,以及野生型小鼠,作为对照。 CBS( - / - )和CTH( - / - )小鼠小于野生型小鼠,CBS( - / - )小鼠中的CSF产量低于其他小鼠。 CSF氨基酸水平通常低于血清中的氨基酸水平,与CBS( - / - )小鼠血清中的显着氨基酸水平改变相比,CSF中的改变不太明显。然而,标记上调(与野生型)的天冬氨酸/天冬酰胺(ASP / ASN),谷氨酰胺(杜松子酒),丝氨酸(Ser),苏氨酸(THR),苯丙氨酸(PHE),酪氨酸(TYR),甲硫氨酸(满足)在CBS( - / - )小鼠CSF中发现,全同型半胱氨酸和瓜氨酸,赖氨酸(Lys)的下调,以及赖氨酸(Lys)的下调。因为在CTH(/ - )小鼠的CSF中观察到总同型半胱氨酸/瓜氨酸/溶液的类似调节,所以没有CNS功能障碍,降低的CSF体积和其他氨基酸的水平变化可能与CBS( - / - ) - 特定的CNS缺陷。

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