首页> 外文OA文献 >Mapping of the carboxyl terminus within the tertiary structure of transducin's alpha subunit using the heterobifunctional cross-linking reagent, 125I-N-(3-iodo-4-azidophenylpropionamido-S-(2-thiopyridyl) cysteine.
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Mapping of the carboxyl terminus within the tertiary structure of transducin's alpha subunit using the heterobifunctional cross-linking reagent, 125I-N-(3-iodo-4-azidophenylpropionamido-S-(2-thiopyridyl) cysteine.

机译:使用异双功能交联剂125I-N-(3-碘-4-叠氮基苯丙酰胺基-s-(2-硫代吡啶基)半胱氨酸)定位转导蛋白α亚基三级结构内的羧基末端

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摘要

A heterobifunctional cross-linking reagent, 125I-N-(3-iodo-4-azidophenylpropionamido-S-(2-thiopyridyl) cysteine (125-ACTP), has been synthesized. 125I-ACTP has been used to derivative reduced sulfhydryls of the retinal G protein, transducin (Gt), to form a mixed disulfide bond under mild, nondenaturing conditions (pH 7.4, 4 degrees C). The resulting disulfide was easily cleaved using reducing reagents. A 200-fold molar excess of 125I-ACTP relative to Gt resulted in the incorporation of 1-1.3 mol of the 125I-N-(3-iodo-4-azidophenylpropionamido)cysteine moiety of ACTP into Gt alpha. In contrast to 125I-ACTP, dithionitrobenzoate and dithiopyridone derivatized six sulfhydryls in native Gt. Incubation of a 10-fold molar excess of 125I-ACTP relative to Gt resulted in the derivatization of 0.75-0.9 and 0.1 mol of reduced sulfhydryls/mol Gt alpha and beta, respectively. Gt gamma was not derivatized by 125I-ACTP. Thus, Gt alpha was preferentially derivatized by 125I-ACTP. Tryptic digestion and amino acid sequencing of Gt alpha indicated that both Cys-347 near the carboxyl terminus and Cys-210 between the second and third consensus sequences forming the GTP-binding site were derivatized by 125I-ACTP in a ratio of approximately 70 and 30%, respectively. Thus, both Cys-210 and Cys-347 are labeled, even though derivatization by 125I-ACTP does not exceed 1 mol of SH/mol Gt alpha. It appears that derivatization of one sulfhydryl, either Cys-210 or Cys-347, excludes labeling of the second cysteine either by steric hindrance or induced conformational change making the second cysteine inaccessible to 125I-ACTP. Consistent with this finding was the observation that pertussis toxin-catalyzed ADP-ribosylation of Cys-347 inhibited 125I-ACTP derivatization of Cys-210. Derivatization of Gt alpha at either Cys-210 or Cys-347 by 125I-ACTP inhibited rhodopsin-catalyzed guanosine 5u27-3-O-(thio)triphosphate binding to Gt, mimicking the effect of ADP-ribosylation of Cys-347 by pertussis toxin. ACTP contains a radioiodinated phenylazide moiety which, upon activation, can cross-link the derivatized cysteine to an adjacent polypeptide domain. Following reduction of the disulfide, the [125I] iodophenyl moiety will be transferred to the azide-inserted polypeptide. When photoactivation of the phenylazide moiety of 125I-ACTP after sulfhydryl derivatization was performed, insertion of the Cys-347 which contains Cys-210, was found.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:已经合成了异双功能交联剂,125i-N-(3-碘-4-氮杂苯基苯基丙酰氨基酰胺-S-(2-甲基吡啶基)半胱氨酸(125-ACTP)。125i-ACTP已用于衍生物还原的磺基视网膜G蛋白,转霉素(GT),在温和,非生种条件下形成混合二硫键(pH 7.4,4℃)。使用还原试剂容易地裂解所得二硫化物。200倍的摩尔超过125i-ACTP相对GT导致将1-1.3摩尔的125i-n-(3-碘-4-氮杂苯基丙酰丙酰胺)半胱氨酸部分掺入actp进入gtα。与125i-Actp,二硫代苯甲酸二苯甲酸二苯甲酸二甲酸二苯甲酸二甲酸二甲酸二烷基酯衍生化六个巯基。相对于GT的10倍摩尔过量的10倍摩尔过量的孵育导致衍生化为0.75-0.9和0.1摩尔的磺基/摩尔GTα和β。GTγ不衍生125i-ACTP。从而,GT alpha优先通过125i-accp衍生化。胰蛋白酶消化和GTα的氨基酸测序表明,在形成GTP结合位点的第二和第三共凝聚位点之间的羧基末端和Cys-210附近的两种Cys-347分别以约70%和30%的比例衍生125i-ACTP 。因此,即使125i-Actp的衍生化不超过1mol的Sh / mol gtα,也标记了Cys-210和Cys-347。似乎一种巯基,Cys-210或Cys-347的衍生化,不包括通过空间障碍或诱导的构象变化来标记第二半胱氨酸,使得第二半胱氨酸可接近125i-Actp。与此发现一致的是观察到Cys-347的Pertussis毒素催化的ADP-核糖基化抑制了Cys-210的125i-Actp衍生化。在Cys-210或Cys-347的GTα的衍生化通过125i-ACTP抑制紫红蛋白催化的鸟苷5 U27-3-O-(ThiO)三磷酸三磷酸三磷酸酯结合,模拟Cys-347的Adp-藜糖基化的作用Pertussis毒素。 Actp含有放射性碘化苯基氮杂物部分,其在活化后可以将衍生的半胱氨酸与相邻的多肽结构域交联。降低二硫化物后,[125i]碘苯基部分将转移到叠氮化物插入的多肽中。当进行亚硫代铵衍生化后125i-Actp的苯基氮杂物部分的光激活时,发现含有Cys-210的Cys-347。(抽象截断为400字)

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