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Functional analysis of the C6 zinc finger gene pro1 involved in fungal sexual development.

The pro1 gene, controlling fruiting body development in the homothallic ascomycete Sordaria macrospora, encodes a C6 zinc finger protein with a typical DNA binding domain of GAL4-like C6 zinc finger proteins as well as a putative nuclear targeting signal. In the corresponding mutant pro1, the pro1 gene is deleted, and the transition of primordia into mature fruiting bodies is prevented. To further characterize the PRO1 polypeptide, the yeast system was used for identifying a transactivation domain in the N-terminal half of PRO1, which probably also functions in S. macrospora. The functional analysis was extended by using truncated versions of the pro1 gene in complementation transformations of a deltapro1 mutant. Interestingly, the 5' part of the pro1 gene encoding the DNA binding and transactivation domain as well as putative nuclear targeting signals was sufficient to restore fertility in the sterile pro1 mutant. In vitro mutagenesis verified that the DNA binding domain is essential for normal fruiting body development. This was concluded from transformation experiments with eight pro1 derivatives containing triplet substitutions in conserved codons of the DNA binding domain; some, but not all, failed in restoring the wild-type phenotype in mutant pro1. Using a PCR-based cloning strategy, pro1 homologs from the two related heterothallic species Neurospora crassa and Sordaria brevicollis were isolated, showing similarities in the predicted amino acid sequences of 91 and 90%, respectively. When a N. crassa pro1 cDNA clone was used in complementation transformations, we succeeded in restoring the wild-type phenotype to the S. macrospora pro1 mutant. These data suggest that pro1 homologs from heterothallic species can provide the pro1 function in homothallic ascomycetes. Based on the published sequence of the N. crassa genome, we identified hpro1A, another transcriptionally expressed gene, with a similarity of 40% to the pro1 genes, which is present as a single copy gene in N. crassa as well as in S. macrospora.

Amino Acid Sequence↗

The MAPKK kinase SteC regulates conidiophore morphology and is essential for heterokaryon formation and sexual development in the homothallic fungus Aspergillus nidulans.

Environmental signals can be transduced into intracellular responses by the action of MAP kinase cascades. Sequential phosphorylation results in the transient activation of a MAP kinase, which in turn activates certain transcription factors and thus a set of pathway-specific genes. Many steps in this cascade are conserved, and homologues have been discovered from yeast to human. We have characterized the MAPKK kinase, SteC, a homologue of Saccharomyces cerevisiae Ste11, in the filamentous fungus Aspergillus nidulans. The 886-amino-acid-long protein shares the highest similarity to Neurospora crassa Nrc-1. Deletion of the gene in A. nidulans results in a slower growth rate, the formation of more branched hyphae, altered conidiophore morphology, an inhibition of heterokaryon formation and a block of cleistothecium development. The gene is transcriptionally activated during asexual development and controls the phosphorylation of two putative MAP kinases.

Amino Acid Sequence↗

Biliary atresia, the next generation: a review of liver function, social activity, and sexual development in the late postoperative period.

PURPOSE: The current study aimed to establish the management for biliary atresia (BA) patients in the late postoperative period. METHODS: Of 165 BA patients operated on in the authors' department, 44 patients (16 boys, 28 girls) with a follow-up period of more than 15 years were reviewed retrospectively. RESULTS: Forty-one of 44 patients (93.2%) currently are employed or highly educated, 7 are married, whereas 2 (4.5%) died, and 10 (22.7%) required liver transplantation after puberty. Four babies have been born from BA parents without congenital anomalies. Four girls conceived 5 times and delivered 3 newborns weighing 2,330 to 2,474 g including one delivered after transplantation. Maternal portal hypertension uniformly deteriorated during pregnancy, and one pregnancy was terminated. Menstrual disorder correlated significantly with the biochemical data related to liver function at puberty such as serum choline esterase (266 +/- 70.4 in 19 normal patients v 159 +/- 34.3 IU/L in 9 abnormal patients, P =.00057), asparate aminotransferase (42 +/- 30.8 v 96.0 +/- 63.6 IU/L; P =.0031), and serum albumin (4.6 +/- 0.4 v 3.9 +/- 0.6 g/dL; P =.013). CONCLUSIONS: The long-term survivors of Kasai's operation, with or without liver transplantation, have reached the next generation. Transgenerational follow-up and management including conception and perinatal care should be required for BA patients.

Adolescent↗

Intraspecific heterochrony and life history evolution: decoupling somatic and sexual development in a facultatively paedomorphic salamander.

Morphological features such as size and shape are the most common focus in studies of heterochronic change. Frequently, these easily observed and measured features are treated as a major target of selection, potentially ignoring traits more closely related to fitness. We question the primacy of morphological data in studies of heterochrony, and instead suggest that principal sources of fitness, such as life history characteristics, are not only the chief targets of selection, but changes in them may necessitate changes in other (subordinate) elements of the organism. We use an experimental approach to investigate the timing of metamorphosis and maturation in a facultatively paedomorphic salamander, Ambystoma talpoideum. We determine that individuals possessing the well-known paedomorphic phenotype are peramorphic with regard to maturation, through the process of predisplacement (an earlier onset of maturation). Combining the well studied ecology of dimorphic A. talpoideum populations with theories of heterochronic mechanisms and life history evolution, we conclude that age at maturation is the principal target of selection and that morphological changes are secondary effects. Increased attention to the intimate connection between life history evolution and heterochrony is the most promising route to a better understanding of both.

Ambystomatidae↗