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Role of the ubiquitin-like modifier FAT10 in protein degradation and ...

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Chapter 1<br />

<strong>of</strong> <strong>ubiquit<strong>in</strong></strong>-doma<strong>in</strong> prote<strong>in</strong>s named NEDD8 ultimate buster 1 long (NUB1L)<br />

(Kamitani et al., 2001; Kito et al., 2001).<br />

Several <strong>ubiquit<strong>in</strong></strong>-doma<strong>in</strong> prote<strong>in</strong>s consist <strong>of</strong> an N-term<strong>in</strong>al UBL-doma<strong>in</strong> which<br />

b<strong>in</strong>ds to <strong>the</strong> 19S regulator <strong>of</strong> <strong>the</strong> 26S proteasome (Schauber et al., 1998) <strong>and</strong> one<br />

or more UBA-doma<strong>in</strong>s that b<strong>in</strong>d mono- or poly<strong>ubiquit<strong>in</strong></strong> (H<strong>of</strong>mann <strong>and</strong> Bucher,<br />

1996; Raasi et al., 2005). Members <strong>of</strong> this group <strong>in</strong>clude Rad23, which is <strong>in</strong>-<br />

volved <strong>in</strong> nucleotide excision repair, <strong>and</strong> Dsk2, which plays a role <strong>in</strong> sp<strong>in</strong>dle pole<br />

duplication (Miller et al., 1982; Raasi et al., 2004; Bigg<strong>in</strong>s et al., 1996). It has<br />

been suggested that <strong>the</strong>se <strong>ubiquit<strong>in</strong></strong>-doma<strong>in</strong> prote<strong>in</strong>s serve as l<strong>in</strong>kers <strong>of</strong> ubiquity-<br />

lated prote<strong>in</strong>s <strong>and</strong> <strong>the</strong> 26S proteasome (Miller <strong>and</strong> Gordon, 2005), but <strong>the</strong> role <strong>of</strong><br />

<strong>the</strong>se prote<strong>in</strong>s <strong>in</strong> <strong>degradation</strong> is still controversial. Some artificial reporter sub-<br />

strates accumulate <strong>in</strong> rad23-deleted <strong>and</strong> dsk2-deleted cells, as do high molecu-<br />

lar weight <strong>ubiquit<strong>in</strong></strong> conjugates (Wilk<strong>in</strong>son et al., 2001; Chen <strong>and</strong> Madura, 2002;<br />

Funakoshi et al., 2002; Rao <strong>and</strong> Sastry, 2002; Saeki et al., 2002a), but even <strong>in</strong><br />

rad23/rpn10 doubly deleted cells, <strong>the</strong> bulk turnover <strong>of</strong> short-lived prote<strong>in</strong>s is not<br />

affected (Lambertson et al., 1999). Overexpression <strong>of</strong> ei<strong>the</strong>r hPlic or Rad23 leads<br />

to <strong>in</strong>hibition <strong>of</strong> substrate turnover by <strong>the</strong> 26S proteasome (Kleijnen et al., 2000;<br />

Ortolan et al., 2000), <strong>and</strong> an excess <strong>of</strong> Rad23 <strong>in</strong>hibits <strong>the</strong> <strong>in</strong> vitro <strong>degradation</strong> <strong>of</strong><br />

Ub5-DHFR by <strong>the</strong> 26S proteasome (Raasi <strong>and</strong> Pickart, 2003). A recent study sug-<br />

gested that UBL-UBA prote<strong>in</strong>s, act<strong>in</strong>g as multi<strong>ubiquit<strong>in</strong></strong> cha<strong>in</strong> b<strong>in</strong>d<strong>in</strong>g prote<strong>in</strong>s<br />

(MCBP), def<strong>in</strong>e a new layer <strong>of</strong> substrate specificity, where different MCBP are<br />

<strong>in</strong>volved <strong>in</strong> <strong>the</strong> <strong>degradation</strong> <strong>of</strong> different prote<strong>in</strong>s (Verma et al., 2004a). The UBA-<br />

doma<strong>in</strong>s are usually essential for this function. Rad23 lack<strong>in</strong>g its UBA-doma<strong>in</strong>s<br />

cannot <strong>in</strong>hibit <strong>degradation</strong> <strong>in</strong> vitro anymore (Raasi <strong>and</strong> Pickart, 2003), nor can<br />

it b<strong>in</strong>d poly<strong>ubiquit<strong>in</strong></strong>. The UBL-doma<strong>in</strong>s, on <strong>the</strong> o<strong>the</strong>r h<strong>and</strong>, are required for<br />

b<strong>in</strong>d<strong>in</strong>g to <strong>the</strong> 26S proteasome (Schauber et al., 1998). For example, only Rad23<br />

with both UBA- <strong>and</strong> UBL-doma<strong>in</strong>s can rescue <strong>degradation</strong> by ei<strong>the</strong>r Rad23- or<br />

Rpn10-depleted proteasomes <strong>in</strong> vitro (Verma et al., 2004a).<br />

In this study we <strong>in</strong>vestigated <strong>the</strong> impact <strong>of</strong> <strong>the</strong> UBL- <strong>and</strong> UBA-doma<strong>in</strong>s <strong>of</strong> NUB1L<br />

on <strong>the</strong> b<strong>in</strong>d<strong>in</strong>g <strong>and</strong> <strong>degradation</strong> <strong>of</strong> <strong>FAT10</strong> as well as <strong>the</strong> role <strong>of</strong> <strong>the</strong> two UBL-<br />

doma<strong>in</strong>s <strong>of</strong> <strong>FAT10</strong>. We were able to show that all three UBA-doma<strong>in</strong>s <strong>of</strong> NUB1L<br />

are required for <strong>FAT10</strong> b<strong>in</strong>d<strong>in</strong>g whereas <strong>the</strong> NUB1L UBL-doma<strong>in</strong> mediates <strong>in</strong>-<br />

teraction with <strong>the</strong> 26S proteasome. Surpris<strong>in</strong>gly, a NUB1L mutant lack<strong>in</strong>g <strong>the</strong><br />

UBA-doma<strong>in</strong>s was still able to accelerate <strong>the</strong> <strong>degradation</strong> <strong>of</strong> <strong>FAT10</strong>, even though<br />

<strong>the</strong> two prote<strong>in</strong>s no longer <strong>in</strong>teracted. This apparent contradiction could be rec-<br />

onciled by <strong>the</strong> f<strong>in</strong>d<strong>in</strong>g that <strong>FAT10</strong> <strong>and</strong> NUB1L as well as both UBL-doma<strong>in</strong>s <strong>of</strong><br />

<strong>FAT10</strong> separately <strong>in</strong>teracted with <strong>the</strong> 26S proteasome. Taken toge<strong>the</strong>r, we found<br />

39

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