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在氨存在的情况下,与乳酸和丙酮酸转化相关的碳氮通量肝带化的灵活性。

Flexibility of the hepatic zonation of carbon and nitrogen fluxes linked to lactate and pyruvate transformations in the presence of ammonia.

作者信息

Comar Jurandir Fernando, Suzuki-Kemmelmeier Fumie, Nascimento Ecio Alves, Bracht Adelar

机构信息

Laboratory of Liver Metabolism, Dept. of Biochemistry, Univ. of Maringá, 87020900 Maringá, Brazil.

出版信息

Am J Physiol Gastrointest Liver Physiol. 2007 Oct;293(4):G838-49. doi: 10.1152/ajpgi.00120.2007. Epub 2007 Aug 9.

Abstract

It has been proposed that key enzymes of ureagenesis and the alanine aminotransferase activity predominate in periportal hepatocytes. However, ureagenesis from alanine, when measured in the perfused liver, did not show periportal predominance and even the release of the direct products of alanine transformation, lactate and pyruvate, was higher in perivenous cells. An alternative way of analyzing the functional distributions of alanine aminotransferase and the urea cycle along the hepatic acini would be to measure alanine and urea production from precursors such as lactate or pyruvate plus ammonia. In the present work these aspects were investigated in the bivascularly perfused rat liver. The results of the present study confirm that gluconeogenesis and the associated oxygen uptake tend to predominate in the periportal region. Alanine synthesis from lactate and pyruvate plus ammonia, however, predominated in the perivenous region. Furthermore, no predominance of ureagenesis in the periportal region was found, except for conditions of high ammonia concentrations plus oxidizing conditions induced by pyruvate. These observations corroborate the view that data on enzyme activity or expression alone cannot be extrapolated unconditionally to the living cell. The current view of the hepatic ammonia-detoxifying system proposes that the small perivenous fraction of glutamine synthesizing perivenous cells removes a minor fraction of ammonia that escapes from ureagenesis in periportal cells. However, since urea synthesis occurs at high rates in all hepatocytes with the possible exclusion of those cells not possessing carbamoyl-phosphate synthase, it is probable that ureagenesis is equally important as an ammonia-detoxifying mechanism in the perivenous region.

摘要

有人提出,尿素生成的关键酶和丙氨酸转氨酶活性在门静脉周围肝细胞中占主导地位。然而,在灌注肝脏中测量时,丙氨酸的尿素生成并未表现出门静脉周围占优势,甚至丙氨酸转化的直接产物乳酸和丙酮酸在肝静脉周围细胞中的释放量更高。分析丙氨酸转氨酶和尿素循环沿肝腺泡功能分布的另一种方法是测量由乳酸或丙酮酸加氨等前体物质生成的丙氨酸和尿素。在本研究中,在双血管灌注的大鼠肝脏中对这些方面进行了研究。本研究结果证实,糖异生作用及相关的氧摄取倾向于在门静脉周围区域占主导地位。然而,由乳酸、丙酮酸加氨生成丙氨酸的过程在肝静脉周围区域占主导地位。此外,除了高氨浓度加上丙酮酸诱导的氧化条件外,未发现门静脉周围区域尿素生成占优势。这些观察结果证实了这样一种观点,即仅关于酶活性或表达的数据不能无条件地外推到活细胞。目前关于肝脏氨解毒系统的观点认为,合成谷氨酰胺的肝静脉周围细胞的一小部分去除了从门静脉周围细胞尿素生成中逸出的一小部分氨。然而,由于尿素合成在所有肝细胞中都以高速率进行,可能不包括那些不具备氨甲酰磷酸合成酶的细胞,因此尿素生成作为肝静脉周围区域的一种氨解毒机制可能同样重要。

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