Developmentally programmed DNA rearrangement in Tetrahymena thermophila: Isolation and sequence characterization of three new alternative deletion systems
被引:15
作者:
Chau, MF
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机构:Dept. of Molec., Cell./Devmtl. Biol., University of California, Santa Barbara
Chau, MF
Orias, E
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机构:Dept. of Molec., Cell./Devmtl. Biol., University of California, Santa Barbara
Orias, E
机构:
[1] Dept. of Molec., Cell./Devmtl. Biol., University of California, Santa Barbara
programmed DNA rearrangement;
alternative deletion;
genomic subtraction;
ciliate;
D O I:
10.1016/0248-4900(96)84773-3
中图分类号:
Q2 [细胞生物学];
学科分类号:
071009 ;
090102 ;
摘要:
Extensive developmentally programmed DNA rearrangements, including thousands of internal deletions, occur in the differentiating somatic macronucleus in Tetrahymena thermophila. Some deletion systems involve the use of multiple alternative deletion sites. We report here the cloning and the sequences of three new alternative deletion systems (RR, RP and B) obtained using genomic subtraction. The RP and RR deletion systems are 2 kb apart on chromosome IR, and both involve the removal of < 2 kb of micronuclear sequences. The B deletion system is on chromosome 5 and involves a deletion of > 5 kb. All three deleted regions are very AT rich (similar to 80%) and do not appear to encode any protein. Sequences of the regions flanking the deletion junctions of all three systems revealed no sequence similarity among them nor with any previously reported deletion systems, suggesting that different cis-acting elements are involved for rearrangement. Unlike other deletion systems in ciliates, the B deletion system lacks short terminal direct repeats. Our results suggest an average of at least one alternative deletion system per 134 kb of micronuclear DNA and lead to an estimate that at least 25% of all deletion systems in Tetrahymena utilize alternative ends. The genomic subtraction method employed in this study could prove useful for the isolation of alternatively deleted DNA in special-purpose cases in Tetrahymena and other ciliates. The hybridization parameters for genomic subtraction worked out here for highly AT-rich DNA may have wider usefulness.
机构:
FRED HUTCHINSON CANC RES CTR, DEPT GENET, 1124 COLUMBIA ST, SEATTLE, WA 98104 USAFRED HUTCHINSON CANC RES CTR, DEPT GENET, 1124 COLUMBIA ST, SEATTLE, WA 98104 USA
AUSTERBERRY, CF
;
YAO, MC
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机构:
FRED HUTCHINSON CANC RES CTR, DEPT GENET, 1124 COLUMBIA ST, SEATTLE, WA 98104 USAFRED HUTCHINSON CANC RES CTR, DEPT GENET, 1124 COLUMBIA ST, SEATTLE, WA 98104 USA
机构:
FRED HUTCHINSON CANC RES CTR, DEPT GENET, 1124 COLUMBIA ST, SEATTLE, WA 98104 USAFRED HUTCHINSON CANC RES CTR, DEPT GENET, 1124 COLUMBIA ST, SEATTLE, WA 98104 USA
AUSTERBERRY, CF
;
YAO, MC
论文数: 0引用数: 0
h-index: 0
机构:
FRED HUTCHINSON CANC RES CTR, DEPT GENET, 1124 COLUMBIA ST, SEATTLE, WA 98104 USAFRED HUTCHINSON CANC RES CTR, DEPT GENET, 1124 COLUMBIA ST, SEATTLE, WA 98104 USA