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含磷脂酰丝氨酸的膜改变凝血酶原催化结构域的热稳定性:差示扫描量热法研究

Phosphatidylserine-containing membranes alter the thermal stability of prothrombin's catalytic domain: a differential scanning calorimetric study.

作者信息

Lentz B R, Zhou C M, Wu J R

机构信息

Department of Biochemistry and Biophysics, University of North Carolina at Chapel Hill 27599-7260.

出版信息

Biochemistry. 1994 May 10;33(18):5460-8. doi: 10.1021/bi00184a015.

DOI:10.1021/bi00184a015
PMID:8180168
Abstract

Denaturation profiles of bovine prothrombin and its isolated fragments were examined in the presence of Na2EDTA, 5 mM CaCl2, and CaCl2 plus membranes containing 1-palmitoyl-2-oleoyl-3-sn-phosphatidylcholine (POPC) in combination with bovine brain phosphatidylserine (PS). We have shown previously [Lentz, B. R., Wu, J. R., Sorrentino, A. M., & Carleton, J. A. (1991) Biophys. J. 60, 70] that binding to PS/POPC (25/75) large unilamellar vesicles resulted in an enthalpy loss in the main endotherm of prothrombin denaturation (Tm approximately 57-58 degrees C) and a comparable enthalpy gain in a minor endotherm (Tm approximately 59 degrees C) accompanying an upward shift in peak temperature (Tm approximately 73 degrees C). This minor endotherm was also responsive to Ca2+ binding and, in the absence of PS/POPC membranes, corresponded to melting of the N-terminal, Ca2+ and membrane binding domain (fragment 1). Peak deconvolution analysis of the prothrombin denaturation profile and extensive studies of the denaturation of isolated prothrombin domains in the presence and absence of PS/POPC vesicles suggested that membrane binding induced changes in the C-terminal catalytic domain of prothrombin (prethrombin 2) and in a domain that links fragment 1 with the catalytic domain (fragment 2). Specifically, the results have confirmed that the fragment 2 domain interacts with the stabilizes the prethrombin 2 domain and also have shown that fragment 2 interacts directly with the membrane. In addition, the results have demonstrated a heretofore unrecognized interaction between the catalytic and membrane binding domains. This interaction can account for another portion of the denaturation enthalpy that appears at high temperatures in the presence of membranes.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在存在乙二胺四乙酸二钠(Na2EDTA)、5 mM氯化钙(CaCl2)以及含有1-棕榈酰-2-油酰-3- sn -磷脂酰胆碱(POPC)与牛脑磷脂酰丝氨酸(PS)的膜且二者结合的氯化钙的情况下,研究了牛凝血酶原及其分离片段的变性曲线。我们之前已经表明[伦茨,B. R.,吴,J. R.,索伦蒂诺,A. M.,&卡尔顿,J. A.(1991年)《生物物理学杂志》60,70],与PS/POPC(25/75)大单层囊泡结合会导致凝血酶原变性主要吸热峰(熔点Tm约为57 - 58℃)的焓损失,以及伴随峰值温度向上移动(Tm约为73℃)在一个较小吸热峰(Tm约为59℃)中有相当的焓增加。这个较小的吸热峰也对钙离子结合有反应,并且在不存在PS/POPC膜的情况下,对应于N端、钙离子和膜结合结构域(片段1)的熔化。凝血酶原变性曲线的峰去卷积分析以及在存在和不存在PS/POPC囊泡的情况下对分离的凝血酶原结构域变性的广泛研究表明,膜结合诱导了凝血酶原(凝血酶原2)C端催化结构域以及连接片段1与催化结构域的结构域(片段2)的变化。具体而言,结果证实片段2结构域与凝血酶原2结构域相互作用并使其稳定,还表明片段2直接与膜相互作用。此外,结果证明了催化结构域与膜结合结构域之间此前未被认识到的相互作用。这种相互作用可以解释在有膜存在的情况下高温时出现的另一部分变性焓。(摘要截取自250字)

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