Highly charged intrinsically disordered proteins are essential regulators of chromatin structure and transcriptional activity. Here we identify a surprising mechanism of molecular competition that relies on the pronounced dynamical disorder present in these polyelectrolytes and their complexes. The highly positively charged human linker histone H1.0 (H1) binds to nucleosomes with ultrahigh affinity, implying residence times incompatible with efficient biological regulation. However, we show that the disordered regions of H1 retain their large-amplitude dynamics when bound to the nucleosome, which enables the highly negatively charged and disordered histone chaperone prothymosin α to efficiently invade the H1-nucleosome complex and displace ...
© 2021 Elsevier LtdConsiderable progress has been made recently in defining the interactions of link...
Linker histones play essential roles in the chromatin structure of higher eukaryotes. While binding ...
The dynamic architecture of chromatin fibers, a key determinant of genome regulation, is poorly unde...
Highly charged intrinsically disordered proteins are essential regulators of chromatin structure and...
Molecular communication in biology is mediated by protein interactions. According to the current par...
It was recently reported that human linker histone H1.0 and its chaperone prothymosin-α (ProTα) form...
AbstractThe H1 or linker histones bind dynamically to chromatin in living cells via a process that i...
AbstractThe H1 or linker histones bind dynamically to chromatin in living cells via a process that i...
Disordered proteins play an essential role in a wide variety of biological processes, and are often ...
H1 linker histones are highly abundant proteins that compact nucleosomes and chromatin to regulate D...
<div><p>Histone chaperones facilitate assembly and disassembly of nucleosomes. Understanding the pro...
AbstractLinker histone H1 binds with high affinity to naked and nucleosomal DNA in vitro but is rapi...
Molecular communication in biology is mediated by protein interactions. According to the current par...
Histone chaperones facilitate assembly and disassembly of nucleosomes. Understanding the process of ...
© 2021 Elsevier LtdConsiderable progress has been made recently in defining the interactions of link...
© 2021 Elsevier LtdConsiderable progress has been made recently in defining the interactions of link...
Linker histones play essential roles in the chromatin structure of higher eukaryotes. While binding ...
The dynamic architecture of chromatin fibers, a key determinant of genome regulation, is poorly unde...
Highly charged intrinsically disordered proteins are essential regulators of chromatin structure and...
Molecular communication in biology is mediated by protein interactions. According to the current par...
It was recently reported that human linker histone H1.0 and its chaperone prothymosin-α (ProTα) form...
AbstractThe H1 or linker histones bind dynamically to chromatin in living cells via a process that i...
AbstractThe H1 or linker histones bind dynamically to chromatin in living cells via a process that i...
Disordered proteins play an essential role in a wide variety of biological processes, and are often ...
H1 linker histones are highly abundant proteins that compact nucleosomes and chromatin to regulate D...
<div><p>Histone chaperones facilitate assembly and disassembly of nucleosomes. Understanding the pro...
AbstractLinker histone H1 binds with high affinity to naked and nucleosomal DNA in vitro but is rapi...
Molecular communication in biology is mediated by protein interactions. According to the current par...
Histone chaperones facilitate assembly and disassembly of nucleosomes. Understanding the process of ...
© 2021 Elsevier LtdConsiderable progress has been made recently in defining the interactions of link...
© 2021 Elsevier LtdConsiderable progress has been made recently in defining the interactions of link...
Linker histones play essential roles in the chromatin structure of higher eukaryotes. While binding ...
The dynamic architecture of chromatin fibers, a key determinant of genome regulation, is poorly unde...