Nuclear export of ribosomal 60S subunits by the general mRNA export receptor Mex67-Mtr2.
نویسندگان
چکیده
The yeast Mex67-Mtr2 complex and its homologous metazoan counterpart TAP-p15 operate as nuclear export receptors by binding and translocating mRNA through the nuclear pore complexes. Here, we show how Mex67-Mtr2 can also function in the nuclear export of the ribosomal 60S subunit. Biochemical and genetic studies reveal a previously unrecognized interaction surface on the NTF2-like scaffold of the Mex67-Mtr2 heterodimer, which in vivo binds to pre-60S particles and in vitro can interact with 5S rRNA. Crucial structural requirements for this binding platform are loop insertions in the middle domain of Mex67 and Mtr2, which are absent from human TAP-p15. Notably, when the positively charged amino acids in the Mex67 loop are mutated, interaction of Mex67-Mtr2 with pre-60S particles and 5S rRNA is inhibited, and 60S subunits, but not mRNA, accumulate in the nucleus. Thus, the general mRNA exporter Mex67-Mtr2 contains a distinct electrostatic interaction surface for transporting 60S preribosomal cargo.
منابع مشابه
A versatile interaction platform on the Mex67-Mtr2 receptor creates an overlap between mRNA and ribosome export.
The transport receptor Mex67-Mtr2 functions in mRNA export, and also by a loop-confined surface on the heterodimer binds to and exports pre-60S particles. We show that Mex67-Mtr2 through the same surface that recruits pre-60S particles interacts with the Nup84 complex, a structural module of the nuclear pore complex devoid of Phe-Gly domains. In vitro, pre-60S particles and the Nup84 complex co...
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This issue's Cell Biology Select discusses recent discoveries related to the transit of molecules into and out of the nucleus. These include remarkable structural data indicating that the nuclear pore is flexible and may have the ability to stretch during the transit of cargo. New findings also provide insight into the regulated trafficking of one of the cell's most important cargo, the ribosom...
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عنوان ژورنال:
- Molecular cell
دوره 26 1 شماره
صفحات -
تاریخ انتشار 2007