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Structure Subunit Topology and Actin-binding Activity of the Arp2/3 Complex from Acanthamoeba

机译:棘阿米巴Arp2 / 3复合物的结构亚基拓扑和肌动蛋白结合活性。

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摘要

The Arp2/3 complex, first isolated from Acanthamoeba castellani by affinity chromatography on profilin, consists of seven polypeptides; two actinrelated proteins, Arp2 and Arp3; and five apparently novel proteins, p40, p35, p19, p18, and p14 (). The complex is homogeneous by hydrodynamic criteria with a Stokes' radius of 5.3 nm by gel filtration, sedimentation coefficient of 8.7 S, and molecular mass of 197 kD by analytical ultracentrifugation. The stoichiometry of the subunits is 1:1:1:1:1:1:1, indicating the purified complex contains one copy each of seven polypeptides. In electron micrographs, the complex has a bilobed or horseshoe shape with outer dimensions of ∼13 × 10 nm, and mathematical models of such a shape and size are consistent with the measured hydrodynamic properties. Chemical cross-linking with a battery of cross-linkers of different spacer arm lengths and chemical reactivities identify the following nearest neighbors within the complex: Arp2 and p40; Arp2 and p35; Arp3 and p35; Arp3 and either p18 or p19; and p19 and p14. By fluorescent antibody staining with anti-p40 and -p35, the complex is concentrated in the cortex of the ameba, especially in linear structures, possibly actin filament bundles, that lie perpendicular to the leading edge. Purified Arp2/3 complex binds actin filaments with a K d of 2.3 μM and a stoichiometry of approximately one complex molecule per actin monomer. In electron micrographs of negatively stained samples, Arp2/3 complex decorates the sides of actin filaments. EDC/NHS cross-links actin to Arp3, p35, and a low molecular weight subunit, p19, p18, or p14. We propose structural and topological models for the Arp2/3 complex and suggest that affinity for actin filaments accounts for the localization of complex subunits to actinrich regions of Acanthamoeba.
机译:Arp2 / 3复合物是由七个多肽组成,该复合物首先通过亲和蛋白在亲和层析中从卡氏棘阿米巴中分离出来。两种肌动蛋白相关蛋白Arp2和Arp3;和五个明显的新蛋白,p40,p35,p19,p18和p14()。根据流体力学标准,该复合物是均质的,通过凝胶过滤的斯托克斯半径为5.3 nm,沉降系数为8.7 S,并且通过分析超速离心的分子量为197 kD。亚基的化学计量比为1:1:1:1:1:1:1:1,表明纯化的复合物包含七个多肽中的每一个副本。在电子显微照片中,配合物呈双叶或马蹄形,外部尺寸约为13×10 nm,这种形状和尺寸的数学模型与测得的流体力学性质一致。用一系列不同间隔臂长度和化学反应性的交联剂进行化学交联,可确定复合物中下列最近的邻居:Arp2和p40; Arp2和p35; Arp3和p35; Arp3和p18或p19;以及p19和p14。通过用抗p40和-p35进行荧光抗体染色,复合物集中在变形虫的皮层中,尤其是在垂直于前缘的线性结构中,可能是肌动蛋白丝束。纯化的Arp2 / 3复合物以2.3μM的K d结合肌动蛋白丝,每个肌动蛋白单体的化学计量约为1个复合物分子。在负染色样品的电子显微照片中,Arp2 / 3复合物修饰了肌动蛋白丝的侧面。 EDC / NHS将肌动蛋白交联到Arp3,p35和低分子量亚基p19,p18或p14。我们提出了Arp2 / 3复合物的结构和拓扑模型,并提出对肌动蛋白丝的亲和力说明了复杂亚基在棘阿米巴棘阿米巴中的定位。

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