果蝇Smad复合物与两部分结合位点的灵活相互作用

Sheng Gao , Allen Laughon
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引用次数: 11

摘要

bmp响应增强子的一个子集的特征是一个富含gc的Smad1结合位点和一个sbe型Smad4结合位点配对。在某些情况下,这种成对或二分位点相距仅5bp,因此可能由单个Smad1-Smad4复合体连接。其他潜在的配对相隔60 bp,但不知道Smad1-Smad4复合体是否可以跨越这样长的距离,实际上,原生Smad1-Smad4复合体与任何这些两部分元件的结合尚未报道。在这里,我们报道了同源果蝇Smad蛋白的一个复合体,Mad和Medea,能够协同结合到相隔20 bp的GC-rich和SBE位点。分离越宽,通过缩短连接Medea DNA结合域的连接子区域,结合亲和力降低越严重。相反,Mad连接器的长度并不影响配对位点之间的允许距离,相反,它特别有助于Mad与富含gc的位点的接触。最后,我们发现Smad1和Smad4可以参与到二部位点的结合中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Flexible interaction of Drosophila Smad complexes with bipartite binding sites

A subset of BMP-responsive enhancer elements are characterized by pairing of a GC-rich Smad1 binding site and an SBE-type Smad4 binding site. Such paired, or bipartite, sites are in some cases just 5 bp apart and thus might be contacted by a single Smad1–Smad4 complex. Other potential pairings are separated as much as 60 bp but it is not known whether such longer distances can be spanned by a Smad1–Smad4 complex, indeed binding of native Smad1–Smad4 complexes to any of these bipartite elements has yet to be reported. Here we report that a complex of the homologous Drosophila Smad proteins, Mad and Medea, is capable of concerted binding to GC-rich and SBE sites separated by as much as 20 bp. The wider the separation, the more severely binding affinity was reduced by shortening of the linker region that tethers the DNA binding domain of Medea. In contrast, length of the Mad linker did not affect the allowed distance between paired sites, rather it contributes specifically to Mad contact with the GC-rich site. Finally, we show that Smad1 and Smad4 can participate in binding to bipartite sites.

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