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Structural studies of SALL family protein zinc finger cluster domains in complex with DNA reveal preferential binding to an AATA tetranucleotide motif.


ABSTRACT: The Spalt-like 4 transcription factor (SALL4) plays an essential role in controlling the pluripotent property of embryonic stem cells via binding to AT-rich regions of genomic DNA, but structural details on this binding interaction have not been fully characterized. Here, we present crystal structures of the zinc finger cluster 4 (ZFC4) domain of SALL4 (SALL4ZFC4) bound with different dsDNAs containing a conserved AT-rich motif. In the structures, two zinc fingers of SALL4ZFC4 recognize an AATA tetranucleotide. We also solved the DNA-bound structures of SALL3ZFC4 and SALL4ZFC1. These structures illuminate a common preference for the AATA tetranucleotide shared by ZFC4 of SALL1, SALL3, and SALL4. Furthermore, our cell biology experiments demonstrate that the DNA-binding activity is essential for SALL4 function as DNA-binding defective mutants of mouse Sall4 failed to repress aberrant gene expression in Sall4-/- mESCs. Thus, these analyses provide new insights into the mechanisms of action underlying SALL family proteins in controlling cell fate via preferential targeting to AT-rich sites within genomic DNA during cell differentiation.

SUBMITTER: Ru W 

PROVIDER: S-EPMC9672407 | biostudies-literature | 2022 Dec

REPOSITORIES: biostudies-literature

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Structural studies of SALL family protein zinc finger cluster domains in complex with DNA reveal preferential binding to an AATA tetranucleotide motif.

Ru Wenwen W   Koga Tomoyuki T   Wang Xiaoyang X   Guo Qiong Q   Gearhart Micah D MD   Zhao Shidong S   Murphy Mark M   Kawakami Hiroko H   Corcoran Dylan D   Zhang Jiahai J   Zhu Zhongliang Z   Yao Xuebiao X   Kawakami Yasuhiko Y   Xu Chao C  

The Journal of biological chemistry 20221017 12


The Spalt-like 4 transcription factor (SALL4) plays an essential role in controlling the pluripotent property of embryonic stem cells via binding to AT-rich regions of genomic DNA, but structural details on this binding interaction have not been fully characterized. Here, we present crystal structures of the zinc finger cluster 4 (ZFC4) domain of SALL4 (SALL4<sup>ZFC4</sup>) bound with different dsDNAs containing a conserved AT-rich motif. In the structures, two zinc fingers of SALL4<sup>ZFC4</s  ...[more]

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