PubMed HealthSearch

Biomedical subjects

V Buck

Publications and source records attributed to V Buck.

4 recordsLinked to original sources

CDC7 protein kinase activity is required for mitosis and meiosis in Saccharomyces cerevisiae.

The product of the CDC7 gene of Saccharomyces cerevisiae has multiple cellular functions, being needed for the initiation of DNA synthesis during mitosis as well as for synaptonemal complex formation and commitment to recombination during meiosis. The CDC7 protein has protein kinase activity and contains the conserved residues characteristic of the protein kinase catalytic domain. To determine which of the cellular functions of CDC7 require this protein kinase activity, we have mutated some of the conserved residues within the CDC7 catalytic domain and have examined the ability of the mutant proteins to support mitosis and meiosis. The results indicate that the protein kinase activity of the CDC7 gene product is essential for its function in both mitosis and meiosis and that this activity is potentially regulated by phosphorylation of the CDC7 protein.

Alleles

Characterisation of the CDC7 gene product of Saccharomyces cerevisiae as a protein kinase needed for the initiation of mitotic DNA synthesis.

The product of the CDC7 gene of Saccharomyces cerevisiae, which is needed for the initiation of mitotic DNA synthesis, has homology with known and putative protein kinases. This homology is confined to the kinase catalytic domain, which has a unique organisation in CDC7. To demonstrate that, nonetheless, CDC7 protein has kinase activity, the gene was subcloned under the control of the SP6 promoter. Protein synthesised by transcription and translation in vitro was capable of transferring 32P from [gamma-32P]ATP to histone. This activity was not dependent on Ca2+ or cyclic nucleotides. A mutation of CDC7 constructed in vitro, in which the organisation of the kinase catalytic domain was converted to that found in all other similar enzymes, was unable to function in vivo, as judged by its inability to complement the cdc7-1 allele. This suggests that the abnormal structure of the CDC7 catalytic domain is a key element in the cellular function of this protein in initiating DNA synthesis.

Amino Acid Sequence

Dynamic auditory localization: systematic replication of the auditory velocity function.

Two experiments explored the capability of normal-hearing adults to judge the apparent velocity of an unseen moving sound source. In exper. I, 9 naive and, 1 experienced S judged the velocity of a moving source emitting a .5-kc/s tone at 50 db SPL. S's head was in the center of a circle of 1.88-m radius swept by a small loudspeaker. In exper. II the sound was a low-pass-filtered (0.1-1 kc/s) noise at 50 db sound spectrum level. In both experiments perceived velocity was directly proportional to the actual velocity of the source. These results support out initial observations (Waugh et al, J. Aud. Res., 1979, 19, 103-1 10) that auditory velocity discrimination can be described as a power function with an exponent of 1.0. In exper. II the Ss also varied the sound source velocity by means of a variable resistor to produce a perceived velocity of 100 degrees/sec. Performance on the adaptive velocity production task was successfully predicted from the data of the absolute velocity judgment task. The Weber fraction was .052 for relatively fast-moving sound sources (100 degrees/sec). The ability to discriminate sound source velocity appears to be a well-defined feature of the dynamic binaural spatial system.

Audiometry