TY - JOUR
T1 - Structural analysis of the RZZ complex reveals common ancestry with multisubunit vesicle tethering machinery
AU - Çivril, Filiz
AU - Wehenkel, Annemarie
AU - Giorgi, Federico M.
AU - Santaguida, Stefano
AU - Di Fonzo, Andrea
AU - Grigorean, Gabriela
AU - Ciccarelli, Francesca D.
AU - Musacchio, Andrea
PY - 2010/5
Y1 - 2010/5
N2 - The RZZ complex recruits dynein to kinetochores. We investigated structure, topology, and interactions of the RZZ subunits (ROD, ZWILCH, and ZW10) in vitro, in vivo, and in silico. We identify neuroblastoma-amplified gene (NAG), a ZW10 binder, as a ROD homolog. ROD and NAG contain an N-terminal β propeller followed by an α solenoid, which is the architecture of certain nucleoporins and vesicle coat subunits, suggesting a distant evolutionary relationship. ZW10 binding to ROD and NAG is mutually exclusive. The resulting ZW10 complexes (RZZ and NRZ) respectively contain ZWILCH and RINT1 as additional subunits. The X-ray structure of ZWILCH, the first for an RZZ subunit, reveals a novel fold distinct from RINT1's. The evolutionarily conserved NRZ likely acts as a tethering complex for retrograde trafficking of COPI vesicles from the Golgi to the endoplasmic reticulum. The RZZ, limited to metazoans, probably evolved from the NRZ, exploiting the dynein-binding capacity of ZW10 to direct dynein to kinetochores.
AB - The RZZ complex recruits dynein to kinetochores. We investigated structure, topology, and interactions of the RZZ subunits (ROD, ZWILCH, and ZW10) in vitro, in vivo, and in silico. We identify neuroblastoma-amplified gene (NAG), a ZW10 binder, as a ROD homolog. ROD and NAG contain an N-terminal β propeller followed by an α solenoid, which is the architecture of certain nucleoporins and vesicle coat subunits, suggesting a distant evolutionary relationship. ZW10 binding to ROD and NAG is mutually exclusive. The resulting ZW10 complexes (RZZ and NRZ) respectively contain ZWILCH and RINT1 as additional subunits. The X-ray structure of ZWILCH, the first for an RZZ subunit, reveals a novel fold distinct from RINT1's. The evolutionarily conserved NRZ likely acts as a tethering complex for retrograde trafficking of COPI vesicles from the Golgi to the endoplasmic reticulum. The RZZ, limited to metazoans, probably evolved from the NRZ, exploiting the dynein-binding capacity of ZW10 to direct dynein to kinetochores.
KW - CELLBIO
KW - PROTEINS
UR - http://www.scopus.com/inward/record.url?scp=77952613898&partnerID=8YFLogxK
UR - http://www.scopus.com/inward/citedby.url?scp=77952613898&partnerID=8YFLogxK
U2 - 10.1016/j.str.2010.02.014
DO - 10.1016/j.str.2010.02.014
M3 - Article
C2 - 20462495
AN - SCOPUS:77952613898
SN - 0969-2126
VL - 18
SP - 616
EP - 626
JO - Structure with Folding & design
JF - Structure with Folding & design
IS - 5
ER -