A Role for the Proteasome Alpha2 Subunit N-Tail in Substrate Processing

Author:

Sahu Indrajit1ORCID,Bajorek Monika2,Tan Xiaolin3,Srividya Madabhushi3,Krutauz Daria2,Reis Noa2,Osmulski Pawel A.3ORCID,Gaczynska Maria E.3,Glickman Michael H.2

Affiliation:

1. Department of Cancer Biology, Dana-Farber Cancer Institute, Harvard Medical School, Boston, MA 02115, USA

2. Faculty of Biology, Technion—Israel Institute of Technology, Haifa 3525433, Israel

3. Department of Molecular Medicine, University of Texas Health Science Center at San Antonio, San Antonio, TX 78229, USA

Abstract

The proteolytic active sites of the 26S proteasome are sequestered within the catalytic chamber of its 20S core particle (CP). Access to this chamber is through a narrow channel defined by the seven outer α subunits. In the resting state, the N-termini of neighboring α subunits form a gate blocking access to the channel. The attachment of the activators or regulatory particles rearranges the blocking α subunit N-termini facilitating the entry of substrates. By truncating or mutating each of the participating α N-termini, we report that whereas only a few N-termini are important for maintaining the closed gate, all seven N-termini participate in the open gate. Specifically, the open state is stabilized by a hydrogen bond between an invariant tyrosine (Y) in each subunit with a conserved aspartate (D) in its counterclockwise neighbor. The lone exception is the α1–α2 pair leaving a gap in the ring circumference. The third residue (X) of this YD(X) motif aligns with the open channel. Phenylalanine at this position in the α2 subunit comes in direct contact with the translocating substrate. Consequently, deletion of the α2 N-terminal tail attenuates proteolysis despite the appearance of an open gate state. In summary, the interlacing N-terminal YD(X) motifs regulate both the gating and translocation of the substrate.

Funder

William and Ella Owens Foundation

NIH/NIGMS

Israel Science Foundation

Publisher

MDPI AG

Subject

Molecular Biology,Biochemistry

Reference56 articles.

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3. Proteasome in action: Substrate degradation by the 26S proteasome;Sahu;Biochem. Soc. Trans.,2021

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