Dayton J S, Sumi M, Nanthakumar N N, Means A R
Department of Pharmacology, Duke University Medical Center, Durham, North Carolina 27710, USA.
J Biol Chem. 1997 Feb 7;272(6):3223-30. doi: 10.1074/jbc.272.6.3223.
The unique gene for Ca2+/calmodulin-dependent protein kinase (CaMK) has been shown to be essential in Aspergillus nidulans. Disruption of the gene prevents entry of spores into the nuclear division cycle. Here we show that expression of a constitutively active form of CaMK also prevents spores from entering the first S phase in response to a germinating stimulus. Expression of the constitutively active kinase induces premature activation of NIMEcyclin B/NIMXcdc2 in G0/G1. As NIMXcdc2 is present in spores, the elevation of maturation promotion factor activity may be secondary to the early production of NIMEcyclin B or post-translation modification of maturation promotion factor. The expression of the constitutively active CaMK also results in the appearance of NIMA kinase activity within 1 h of the germinating signal. These results support the contention that the activities of maturation promotion factor and NIMA are coincidentally regulated in A. nidulans and suggest that the unscheduled appearance of one or both of these activities may be sufficient to prevent A. nidulans spores from entering into DNA synthesis.
已证明,钙调蛋白依赖性蛋白激酶(CaMK)的独特基因在构巢曲霉中至关重要。该基因的破坏会阻止孢子进入核分裂周期。在此我们表明,组成型活性形式的CaMK的表达也会阻止孢子响应萌发刺激而进入第一个S期。组成型活性激酶的表达会在G0/G1期诱导NIME周期蛋白B/NIMXcdc2的过早激活。由于NIMXcdc2存在于孢子中,成熟促进因子活性的升高可能是NIME周期蛋白B早期产生或成熟促进因子翻译后修饰的结果。组成型活性CaMK的表达还会在萌发信号发出后1小时内导致NIMA激酶活性出现。这些结果支持了这样的观点,即在构巢曲霉中成熟促进因子和NIMA的活性是同时受到调节的,并且表明这些活性中一种或两种的意外出现可能足以阻止构巢曲霉孢子进入DNA合成。