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磷酸化的 MARCKS:一种新型中心体成分,它还定义了小鼠卵皮质肌动蛋白帽的外周亚结构域。

Phosphorylated MARCKS: a novel centrosome component that also defines a peripheral subdomain of the cortical actin cap in mouse eggs.

作者信息

Michaut Marcela A, Williams Carmen J, Schultz Richard M

机构信息

Center for Research on Reproduction and Women's Health and Department of Obstetrics and Gynecology, Philadelphia, PA 19104, USA.

出版信息

Dev Biol. 2005 Apr 1;280(1):26-37. doi: 10.1016/j.ydbio.2005.01.006.

Abstract

MARCKS (myristoylated alanine-rich C-kinase substrate) is a major substrate for protein kinase C (PKC), a kinase that has multiple functions during oocyte maturation and egg activation, for example, spindle function and cytoskeleton reorganization. We examined temporal and spatial changes in p-MARCKS localization during maturation of mouse oocytes and found that p-MARCKS is a novel centrosome component based its co-localization with pericentrin and gamma-tubulin within microtubule organizing centers (MTOCs). Like pericentrin, p-MARCKS staining at the MI spindle poles was asymmetric. Based on this asymmetry, we found that one end of the spindle was preferentially extruded with the first polar body. At MII, however, the spindle poles had symmetrical p-MARCKS staining. p-MARCKS also was enriched in the periphery of the actin cap overlying the MI or MII spindle to form a ring-shaped subdomain. Because phosphorylation of MARCKS modulates its actin crosslinking function, this localization suggests p-MARCKS functions as part of the contractile apparatus during polar body emission. Our finding that an activator of conventional and novel PKC isoforms did not increase the amount of p-MARCKS suggested that an atypical isoform was responsible for MARCKS phosphorylation. Consistent with this idea, immunostaining revealed that the staining patterns of p-MARCKS and the active form of the atypical PKC zeta/lambda isoform(s) were very similar. These results show that p-MARCKS is a novel centrosome component and also defines a previously unrecognized subdomain of the actin cap overlying the spindle.

摘要

MARCKS(肉豆蔻酰化富含丙氨酸的C激酶底物)是蛋白激酶C(PKC)的主要底物,PKC在卵母细胞成熟和卵子激活过程中具有多种功能,例如纺锤体功能和细胞骨架重组。我们研究了小鼠卵母细胞成熟过程中磷酸化MARCKS(p-MARCKS)定位的时空变化,发现基于其在微管组织中心(MTOC)内与中心体蛋白和γ-微管蛋白的共定位,p-MARCKS是一种新型的中心体成分。与中心体蛋白一样,MI纺锤体极处的p-MARCKS染色是不对称的。基于这种不对称性,我们发现纺锤体的一端优先与第一极体一起排出。然而,在MII期,纺锤体极具有对称的p-MARCKS染色。p-MARCKS也富集在覆盖MI或MII纺锤体的肌动蛋白帽的周边,形成一个环形亚结构域。由于MARCKS的磷酸化调节其肌动蛋白交联功能,这种定位表明p-MARCKS在极体排放过程中作为收缩装置的一部分发挥作用。我们发现传统和新型PKC亚型的激活剂不会增加p-MARCKS的量,这表明非典型亚型负责MARCKS的磷酸化。与此观点一致,免疫染色显示p-MARCKS和非典型PKC zeta/lambda亚型的活性形式的染色模式非常相似。这些结果表明p-MARCKS是一种新型的中心体成分,并且还定义了覆盖纺锤体的肌动蛋白帽中一个以前未被识别的亚结构域。

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