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钙调蛋白与平滑肌肌球蛋白、肌球蛋白杆结合,并使粗肌丝与肌动蛋白丝交联。

Caldesmon binds to smooth muscle myosin and myosin rod and crosslinks thick filaments to actin filaments.

作者信息

Marston S, Pinter K, Bennett P

机构信息

Department of Cardiac Medicine, National Heart and Lung Institute, London, UK.

出版信息

J Muscle Res Cell Motil. 1992 Apr;13(2):206-18. doi: 10.1007/BF01874158.

Abstract

It is well established that caldesmon binds to actin (Kb = 10(7) - 10(-8) M-1) and to tropomyosin (Kb = 10(6) M-1) and that it is a potent inhibitor of actomyosin ATPase. Caldesmon can also bind tightly to myosin. We investigated the binding of smooth muscle and nonmuscle caldesmon isoforms (CDh and CDl respectively) to myosin using proteins from sheep aorta. Both caldesmon isoforms bind to myosin with indistinguishable affinity. The affinity is about 10(6) M-1 in low salt buffer, but is weakened by increasing [KCl] reaching 10(5) M-1 in 100 mM KCl. The stoichiometry of binding is about three caldesmon per myosin molecule. Stoichiometry and affinity are not dependent on whether myosin is phosphorylated nor on the presence of Mg2+ and ATP, provided the ionic strength is maintained constant. The caldesmon binding site of smooth muscle myosin is located in the S-2 region, consequently both HMM and myosin rod bind to caldesmon. Over a range of conditions myosin and myosin rod binding to caldesmon were indistinguishable. Skeletal muscle myosin has no caldesmon binding site. Smooth muscle myosin rods form side-polar filaments in low salt buffer in which the backbone packing of LMM into the filament shaft is clearly visible in negatively-stained electron microscopic images. Sometimes the S-2 portions can be seen 'frayed' from the filament shaft. When caldesmon is bound the filament shaft appears to be about 20% thicker and the frayed effect is dramatically increased; long filamentous 'whiskers' are often seen curving out from the filament shaft. Similar structures are observed with smooth muscle and with non-muscle caldesmon. Myosin also binds to caldesmon when it is incorporated into the thin filament; however, this interaction is qualitatively different. Measurements of smooth muscle HMM binding to native thin filaments in the presence of 3 mM MgATP shows there is a high affinity binding (Kb = 10(6) M-1) which is independent of [Ca2+] and of the level of myosin phosphorylation. The stoichiometry is one HMM molecule per actin monomer which is equivalent to up to 14 HMM bound at high affinity per caldesmon. Negatively stained electron microscopic images of the HMM.ADP.Pi-thin filament complex have failed to show any attachment of HMM to the thin filaments. When rod filaments are added to actin plus caldesmon or to native thin filaments the rod filaments are strongly associated with the actin filament bundles. The majority of rod filaments are lined up parallel and in close proximity to actin filaments.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

已充分证实,钙调蛋白可与肌动蛋白(结合常数Kb = 10⁷ - 10⁸ M⁻¹)和原肌球蛋白(结合常数Kb = 10⁶ M⁻¹)结合,并且它是肌动球蛋白ATP酶的强效抑制剂。钙调蛋白也能紧密结合肌球蛋白。我们利用绵羊主动脉的蛋白质研究了平滑肌和非肌肉钙调蛋白同工型(分别为CDh和CDl)与肌球蛋白的结合情况。两种钙调蛋白同工型与肌球蛋白的结合亲和力难以区分。在低盐缓冲液中,亲和力约为10⁶ M⁻¹,但随着[KCl]增加,亲和力会减弱,在100 mM KCl中降至10⁵ M⁻¹。结合化学计量比约为每个肌球蛋白分子结合三个钙调蛋白。只要离子强度保持恒定,化学计量比和亲和力不依赖于肌球蛋白是否磷酸化,也不依赖于Mg²⁺和ATP的存在。平滑肌肌球蛋白的钙调蛋白结合位点位于S - 2区域,因此重酶解肌球蛋白(HMM)和肌球蛋白杆都能与钙调蛋白结合。在一系列条件下,肌球蛋白和肌球蛋白杆与钙调蛋白的结合难以区分。骨骼肌肌球蛋白没有钙调蛋白结合位点。平滑肌肌球蛋白杆在低盐缓冲液中形成侧极丝,在负染电子显微镜图像中,轻酶解肌球蛋白(LMM)在丝轴中的主链堆积清晰可见。有时可以看到S - 2部分从丝轴“散开”。当钙调蛋白结合时,丝轴似乎变粗约20%,散开效应显著增加;常可见到长丝状“须”从丝轴弯曲伸出。平滑肌和非肌肉钙调蛋白都观察到类似结构。当肌球蛋白掺入细肌丝时也会与钙调蛋白结合;然而,这种相互作用在性质上有所不同。在3 mM MgATP存在下,对平滑肌HMM与天然细肌丝结合的测量表明,存在一种高亲和力结合(结合常数Kb = 10⁶ M⁻¹),其与[Ca²⁺]和肌球蛋白磷酸化水平无关。化学计量比是每个肌动蛋白单体结合一个HMM分子,相当于每个钙调蛋白最多有14个HMM以高亲和力结合。HMM·ADP·Pi - 细肌丝复合物的负染电子显微镜图像未能显示HMM与细肌丝有任何附着。当杆状丝添加到肌动蛋白加钙调蛋白或天然细肌丝中时,杆状丝与肌动蛋白丝束强烈结合。大多数杆状丝平行排列并紧邻肌动蛋白丝。(摘要截断于400字)

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