Tojo H, Ichida T, Okamoto M
Department of Molecular Physiological Chemistry, Osaka University Medical School, Japan.
J Biol Chem. 1998 Jan 23;273(4):2214-21. doi: 10.1074/jbc.273.4.2214.
A brush border membrane-associated phospholipase B/lipase was solubilized from the distal two-thirds of rat small intestine by autolysis during storage at -35 degrees C over 1 month, and then the enzyme was purified to homogeneity and characterized enzymatically and structurally. The purified enzyme exhibited broad substrate specificity including esterase, phospholipase A2, lysophospholipase, and lipase activities. SDS-gel electrophoretic and reverse-phase high performance liquid chromatographic analyses demonstrated that a single enzyme catalyzes these activities. It preferred hydrolysis at the sn-2 position of diacylphospholipid and diacylglycerol without strict stereoselectivity, whereas it apparently exhibited no positional specificity toward triacylglycerol. Diisopropyl fluorophosphate, an irreversible inhibitor of serine esterases and lipases inhibited purified enzyme. When the position of enzyme on SDS-gel electrophoresis under the non-reducing conditions was determined by assaying the activity eluted from sliced gels, brush border membrane-associated enzyme corresponded to a approximately 150-kDa protein; autolysis gave a 35-kDa product, in agreement with the results of immunoblot analysis. The purified 35-kDa enzyme consisted of a 14-kDa peptide and a glycosylated 21-kDa peptide. Their NH2-terminal amino acid sequences were determined and found in the second repeat of 161-kDa phospholipase B/lipase with 4-fold tandem repeats of approximately 38 kDa each, which we cloned and sequenced in the accompanying paper (Takemori, H., Zolotaryov, F., Ting, L., Urbain, T., Komatsubara, T., Hatano, O., Okamoto, M., and Tojo, H. (1988) J. Biol. Chem. 273, 2222-2231). These results indicate that the purified enzyme is the catalytic domain derived from the second repeat of brush border membrane-associated phospholipase B/lipase.
一种刷状缘膜相关磷脂酶B/脂肪酶在-35℃储存1个月以上的过程中通过自溶作用从大鼠小肠远端三分之二处溶解出来,然后将该酶纯化至同质,并进行了酶学和结构表征。纯化后的酶表现出广泛的底物特异性,包括酯酶、磷脂酶A2、溶血磷脂酶和脂肪酶活性。SDS-凝胶电泳和反相高效液相色谱分析表明,单一酶催化这些活性。它优先水解二酰基磷脂和二酰基甘油的sn-2位,没有严格的立体选择性,而对三酰基甘油显然没有位置特异性。二异丙基氟磷酸,一种丝氨酸酯酶和脂肪酶的不可逆抑制剂,抑制纯化后的酶。当通过测定从切片凝胶中洗脱的活性来确定非还原条件下酶在SDS-凝胶电泳上的位置时,刷状缘膜相关酶对应于一个约150 kDa的蛋白质;自溶产生一个35 kDa的产物,与免疫印迹分析结果一致。纯化后的35 kDa酶由一个14 kDa的肽和一个糖基化的21 kDa肽组成。测定了它们的NH2-末端氨基酸序列,发现其位于161 kDa磷脂酶B/脂肪酶的第二个重复序列中,该酶具有约38 kDa的4倍串联重复序列,我们在随附论文中对其进行了克隆和测序(武森博,H.,佐洛塔里约夫,F.,丁,L.,乌尔班,T.,小松原,T.,羽田野,O.,冈本,M.,和东条,H.(1988年)《生物化学杂志》273,2222 - 2231)。这些结果表明,纯化后的酶是源自刷状缘膜相关磷脂酶B/脂肪酶第二个重复序列的催化结构域。