1Laboratory of Bacterial Genetics, Centre for DNA Fingerprinting and Diagnostics, Hyderabad, India.
2Graduate Studies, Manipal Academy of Higher Education, Manipal, India.
Microbiology (Reading). 2019 Apr;165(4):463-474. doi: 10.1099/mic.0.000780. Epub 2019 Feb 6.
H-NS is an abundant nucleoid-associated protein in the enterobacteria that mediates both chromatin compaction and transcriptional silencing of numerous genes, especially those that have been acquired by horizontal transfer or that are involved in virulence functions. With two dimerization domains (N-terminal and central) and a C-terminal DNA-binding domain, the 15 kDa H-NS polypeptide can assemble as long polymeric filaments on DNA, and mutations in any of the three domains confer a dominant-negative phenotype in vivo by a subunit-poisoning mechanism. Here we confirm that several of these mutants [L26P, I119T and a truncation beyond residue 92(Δ93)] are also dominant-negative in vitro, in that they reverse the inhibition imposed by native H-NS in two different transcription assay formats (initiation+elongation, or elongation alone). On the other hand, another dominant-negative truncation mutant Δ64 (which possesses only the protein's N-terminal domain) per se completely and unexpectedly inhibited transcription in both assay formats. The Hha protein, which is a paralogue of H-NS and resembles its isolated N-terminal domain, also behaved like Δ64 as an inhibitor of transcription in vitro. We propose that under certain growth conditions, Escherichia coli RNA polymerase may be the direct inhibitory target of Hha, and that this effect is experimentally mimicked by the isolated N-terminal domain of H-NS.
H-NS 是一种在肠杆菌中丰富的核相关蛋白,它介导染色质的紧缩和许多基因的转录沉默,特别是那些通过水平转移获得的或与毒力功能有关的基因。H-NS 多肽有两个二聚化结构域(N 端和中央)和一个 C 端 DNA 结合结构域,可以在 DNA 上组装成长的聚合物细丝,而三个结构域中的任何一个突变都会通过亚基毒害机制在体内赋予显性负表型。在这里,我们证实了这些突变体中的几个[L26P、I119T 和残基 92 以外的截断(Δ93)]在体外也是显性负的,因为它们在两种不同的转录测定格式(起始+延伸或延伸单独)中逆转了天然 H-NS 所施加的抑制。另一方面,另一个显性负截断突变体 Δ64(只拥有蛋白质的 N 端结构域)本身完全且出乎意料地在两种测定格式中抑制了转录。Hha 蛋白是 H-NS 的一个类似物,类似于其分离的 N 端结构域,在体外也像 Δ64 一样作为转录抑制剂。我们提出,在某些生长条件下,大肠杆菌 RNA 聚合酶可能是 Hha 的直接抑制靶标,而 H-NS 的分离 N 端结构域在实验上模拟了这种效应。