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1 frv locus encodes Tmem2, a predicted type II single-pass transmembrane protein.
2 The aging suppressor gene Klotho encodes a single-pass transmembrane protein.
3 spe-19 is predicted to encode a novel single-pass transmembrane protein.
4 malian genes are predicted to be secreted or single-pass transmembrane proteins.
5 variably spliced to encode 152,064 distinct single-pass transmembrane proteins.
7 presence of alpha or betaKlotho, two related single-pass transmembrane proteins, as co-receptors in r
8 roteins, the tetraspanin CD81 as well as the single pass transmembrane protein CD98 are expressed on
18 interaction molecules (STIM1 and STIM2) are single pass transmembrane proteins located mainly in the
19 how that KCC2 is critically regulated by the single-pass transmembrane protein neuropilin and tolloid
20 a, and Pcdhgamma) comprise a large family of single-pass transmembrane proteins predominantly express
21 o (KL) and/or beta-Klotho (KLB), two related single-pass transmembrane proteins restricted in their t
23 wth factor (HB-EGF) is produced as a type-I, single-pass transmembrane protein that can be cleaved to
24 2c or FGFR3c) in complex with beta-Klotho, a single-pass transmembrane protein that is enriched in me
26 or protein (APP) is a ubiquitously expressed single-pass transmembrane protein that undergoes proteol
27 rated that Klotho and betaKlotho, homologous single-pass transmembrane proteins that bind to FGFRs, a
28 member of a family of structurally related, single-pass transmembrane proteins that carry out a vari
30 The gamma subunit is a member of a family of single-pass transmembrane proteins that induces ion flux
33 ted small transmembrane proteins are simple, single-pass transmembrane proteins that traffic through
34 The 10.5-kb Cdh23 cDNA encodes a very large, single-pass transmembrane protein, that we have called o
36 on and characterization of lfd-1, encoding a single pass transmembrane protein, which is also involve
37 that FGF21 activity depends on betaKlotho, a single-pass transmembrane protein whose expression is in
38 epidermal growth factor receptor (EGFR) is a single-pass transmembrane protein with an extracellular
39 The cloning and characterization of a novel single-pass transmembrane protein with limited homology
41 for motoneuron-expressed genes and encodes a single-pass transmembrane protein with sequence homology
42 d amino acid sequences suggest that both are single-pass transmembrane proteins with amino-terminal g
43 NRG1 isotypes I and II, which like NRG2 are single-pass transmembrane proteins with an Ig-like domai
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