共 68 条
The DNA-binding protein HTa from Thermoplasma acidophilum is an archaeal histone analog
被引:15
作者:

Hocher, Antoine
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机构:
MRC London Inst Med Sci LMS, London, England
Imperial Coll, Fac Med, ICS, London, England MRC London Inst Med Sci LMS, London, England

Rojec, Maria
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机构:
MRC London Inst Med Sci LMS, London, England
Imperial Coll, Fac Med, ICS, London, England MRC London Inst Med Sci LMS, London, England

Swadling, Jacob B.
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机构:
MRC London Inst Med Sci LMS, London, England
Imperial Coll, Fac Med, ICS, London, England MRC London Inst Med Sci LMS, London, England

Esin, Alexander
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h-index: 0
机构:
MRC London Inst Med Sci LMS, London, England
Imperial Coll, Fac Med, ICS, London, England MRC London Inst Med Sci LMS, London, England

Warnecke, Tobias
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h-index: 0
机构:
MRC London Inst Med Sci LMS, London, England
Imperial Coll, Fac Med, ICS, London, England MRC London Inst Med Sci LMS, London, England
机构:
[1] MRC London Inst Med Sci LMS, London, England
[2] Imperial Coll, Fac Med, ICS, London, England
来源:
ELIFE
|
2019年
/
8卷
基金:
英国医学研究理事会;
关键词:
NUCLEOID-ASSOCIATED PROTEINS;
GENE-REGULATION;
HU;
CHROMATIN;
TRANSCRIPTION;
PERSPECTIVES;
ORGANIZATION;
EVOLUTION;
GROWTH;
D O I:
10.7554/eLife.52542
中图分类号:
Q [生物科学];
学科分类号:
07 ;
0710 ;
09 ;
摘要:
Histones are a principal constituent of chromatin in eukaryotes and fundamental to our understanding of eukaryotic gene regulation. In archaea, histones are widespread but not universal: several lineages have lost histone genes. What prompted or facilitated these losses and how archaea without histones organize their chromatin remains largely unknown. Here, we elucidate primary chromatin architecture in an archaeon without histones, Thermoplasma acidophilum, which harbors a HU family protein (HTa) that protects part of the genome from micrococcal nuclease digestion. Charting HTa-based chromatin architecture in vitro, in vivo and in an HTa-expressing E. coli strain, we present evidence that HTa is an archaeal histone analog. HTa preferentially binds to GC-rich sequences, exhibits invariant positioning throughout the growth cycle, and shows archaeal histone-like oligomerization behavior. Our results suggest that HTa, a DNA-binding protein of bacterial origin, has converged onto an architectural role filled by histones in other archaea.
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页数:24
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