Structural Basis for DNA Binding Specificity by the Auxin-Dependent ARF Transcription Factors

نویسندگان

  • D. Roeland Boer
  • Alejandra Freire-Rios
  • Willy A.M. van den Berg
  • Terrens Saaki
  • Iain W. Manfield
  • Stefan Kepinski
  • Irene López-Vidrieo
  • Jose Manuel Franco-Zorrilla
  • Sacco C. de Vries
  • Roberto Solano
  • Dolf Weijers
  • Miquel Coll
چکیده

Auxin regulates numerous plant developmental processes by controlling gene expression via a family of functionally distinct DNA-binding auxin response factors (ARFs), yet the mechanistic basis for generating specificity in auxin response is unknown. Here, we address this question by solving high-resolution crystal structures of the pivotal Arabidopsis developmental regulator ARF5/MONOPTEROS (MP), its divergent paralog ARF1, and a complex of ARF1 and a generic auxin response DNA element (AuxRE). We show that ARF DNA-binding domains also homodimerize to generate cooperative DNA binding, which is critical for in vivo ARF5/MP function. Strikingly, DNA-contacting residues are conserved between ARFs, and we discover that monomers have the same intrinsic specificity. ARF1 and ARF5 homodimers, however, differ in spacing tolerated between binding sites. Our data identify the DNA-binding domain as an ARF dimerization domain, suggest that ARF dimers bind complex sites as molecular calipers with ARF-specific spacing preference, and provide an atomic-scale mechanistic model for specificity in auxin response.

برای دانلود رایگان متن کامل این مقاله و بیش از 32 میلیون مقاله دیگر ابتدا ثبت نام کنید

ثبت نام

اگر عضو سایت هستید لطفا وارد حساب کاربری خود شوید

منابع مشابه

A Review of Auxin Response Factors (ARFs) in Plants

Auxin is a key regulator of virtually every aspect of plant growth and development from embryogenesis to senescence. Previous studies have indicated that auxin regulates these processes by controlling gene expression via a family of functionally distinct DNA-binding auxin response factors (ARFs). ARFs are likely components that confer specificity to auxin response through selection of target ge...

متن کامل

Activation and repression of transcription by auxin-response factors.

Auxin-response factors (ARFs) bind with specificity to TGTCTC auxin-response elements (AuxREs), which are found in promoters of primary/early auxin-response genes. Nine different ARFs have been analyzed for their capacity to activate or repress transcription in transient expression assays employing auxin-responsive GUS reporter genes. One ARF appears to act as a repressor. Four ARFs function as...

متن کامل

Auxin Response Factors: output control in auxin biology.

The phytohormone auxin is involved in almost all developmental processes in land plants. Most, if not all, of these processes are mediated by changes in gene expression. Auxin acts on gene expression through a short nuclear pathway that converges upon the activation of a family of DNA-binding transcription factors. These AUXIN RESPONSE FACTORS (ARFs) are thus the effector of auxin response and ...

متن کامل

Funneling auxin action: specificity in signal transduction.

Auxin regulates a broad spectrum of developmental processes, mediating transcriptional regulation via protein degradation. The molecular mechanisms of auxin action are partially understood whereas the molecular basis for developmental specificity in auxin responses is currently unclear. Recent biochemical and chemical-genetics studies have narrowed the search for regulators in auxin signaling t...

متن کامل

The interaction and integration of auxin signaling components.

IAA, a naturally occurring auxin, is a simple signaling molecule that regulates many diverse steps of plant development. Auxin essentially coordinates plant development through transcriptional regulation. Auxin binds to TIR1/AFB nuclear receptors, which are F-box subunits of the SCF ubiquitin ligase complex. The auxin signal is then modulated by the quantitative and qualitative responses of the...

متن کامل

ذخیره در منابع من


  با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید

عنوان ژورنال:
  • Cell

دوره 156  شماره 

صفحات  -

تاریخ انتشار 2014