Moreno-Borchart A C, Strasser K, Finkbeiner M G, Shevchenko A, Shevchenko A, Knop M
Abteilung Molekulare Zellbiologie, Max-Planck-Institut für Biochemie, Am Klopferspitz 18a, D-82152 Martinsried, Germany.
EMBO J. 2001 Dec 17;20(24):6946-57. doi: 10.1093/emboj/20.24.6946.
In yeast, the differentiation process at the end of meiosis generates four daughter cells inside the boundaries of the mother cell. A meiosis-specific plaque (MP) at the spindle pole bodies (SPBs) serves as the starting site for the formation of the prospore membranes (PSMs) that are destined to encapsulate the post-meiotic nuclei. Here we report the identification of Ady3p and Ssp1p, which are functional components of the leading edge protein (LEP) coat, that covers the ring-shaped opening of the PSMs. Ssp1p is required for the assembly of the LEP coat, which consists of at least three proteins (Ssp1p, Ady3p and Don1p). The assembly of the LEP coat starts with the formation of cytosolic precursors, which then bind in an Ady3p-dependent manner to the SPBs. Subsequent processes at the SPBs leading to functional LEP coats require Ssp1p and the MP components. During growth of the PSMs, the LEP coat functions in formation of the cup-shaped membrane structure that is indispensable for the regulated cellularization of the cytoplasm around the post-meiotic nuclei.
在酵母中,减数分裂末期的分化过程在母细胞边界内产生四个子细胞。纺锤体极体(SPB)上的减数分裂特异性斑块(MP)作为孢子前膜(PSM)形成的起始位点,PSM注定要包裹减数分裂后的细胞核。在此,我们报告了Ady3p和Ssp1p的鉴定结果,它们是前缘蛋白(LEP)外壳的功能成分,覆盖PSM的环形开口。Ssp1p是LEP外壳组装所必需的,LEP外壳至少由三种蛋白质(Ssp1p、Ady3p和Don1p)组成。LEP外壳的组装始于胞质前体的形成,然后这些前体以Ady3p依赖的方式与SPB结合。在SPB处导致功能性LEP外壳的后续过程需要Ssp1p和MP成分。在PSM生长过程中,LEP外壳在杯状膜结构的形成中起作用,该结构对于减数分裂后细胞核周围细胞质的有序细胞化不可或缺。