Purification and biochemical characterization of membrane-bound neutral ceramidase from camel brain (Camelus dromedarius).

International journal of biochemistry and molecular biology Pub Date : 2013-03-31 Print Date: 2013-01-01
Shahanas Chathoth, Faisal Thayyullathil, Alaa Galadari, Mahendra Patel, Sehamuddin Galadari
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Abstract

Ceramidases cleave the N-acyl linkages of ceramide to generate sphingosine and its subsequent product sphingosine-1-phosphate (S1P). Ceramide and S1P are important bioactive lipids, and ceramidases are important in regulating the availability of these lipids. In this study, we report the purification and characterization of camel brain neutral ceramidase (CBCDase). The novel CBCDase was purified from camel brain using sequential chromatography of DEAE-Sepharose, Phenyl-Sepharose, Superdex, and Mono Q column. The Mono Q fractions containing ceramidase activity were used for enzyme characterization. The purified CBCDase showed a single band corresponding to a molecular weight of ~100 kDa, displaying classical Michaelis-Menten kinetics, with maximum enzymatic activity at pH 7.0. Deglycosylation of the enzyme yields an apparent molecular weight of ~80 kDa. The purified CBCDase was inhibited by Zn(2+) and Cu(2+), while Ca(2+) stimulates the activity. Phosphatidic acid, phosphatidylserine and phosphatidylcholine completely inhibited enzyme activity at low concentrations. Thiol-containing compounds inhibited the CBCDase activity. Among the nucleotides, ADP, UMP, and TMP inhibited the enzyme activity at low concentrations, whereas, ATP inhibited the activity at higher concentrations only. The CBCDase catalysed both ceramide hydrolysis and reverse CDase reactions. For the first time, we have purified to apparent homogeneity of a ~100 kDa nCDase from camel brain.

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骆驼脑膜结合中性神经酰胺酶的纯化及生化特性研究。
神经酰胺酶裂解神经酰胺的n -酰基键生成鞘氨醇及其后续产物鞘氨醇-1-磷酸(S1P)。神经酰胺和S1P是重要的生物活性脂质,神经酰胺酶在调节这些脂质的可用性中起重要作用。在这项研究中,我们报道了骆驼脑中性神经酰胺酶(CBCDase)的纯化和特性。采用DEAE-Sepharose、Phenyl-Sepharose、Superdex和Mono Q柱序层析,从骆驼脑中纯化出新的CBCDase。采用含有神经酰胺酶活性的Mono Q组分进行酶学表征。纯化后的CBCDase为单带,分子量约为100 kDa,具有经典的Michaelis-Menten动力学,在pH 7.0时酶活性最高。酶的去糖基化产生表观分子量约80 kDa。纯化后的CBCDase受到Zn(2+)和Cu(2+)的抑制,而Ca(2+)则对其活性有刺激作用。磷脂酸、磷脂酰丝氨酸和磷脂酰胆碱在低浓度下完全抑制酶活性。含硫醇类化合物抑制CBCDase活性。在这些核苷酸中,ADP、UMP和TMP在低浓度下抑制酶的活性,而ATP仅在高浓度下抑制酶的活性。CBCDase同时催化神经酰胺水解和逆反应。首次从骆驼脑中纯化出了一种~100 kDa的nCDase,具有明显的同源性。
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