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1 f implicated in proper folding of the KIR D0 Ig-like domain.
2 e of obscurin that is C-terminal to its last Ig-like domain.
3  and containing a single extracellular V-set Ig-like domain.
4 ntains the paracaspase domain and an ensuing Ig-like domain.
5 ion of DC-HIL to reside in its extracellular Ig-like domain.
6 sulfate proteoglycans via an immunoglobulin (Ig)-like domain.
7 pe I membrane glycoproteins that contain two Ig-like domains.
8 ependent of each other to the p50 N-terminal Ig-like domains.
9 hed genes that encode membrane proteins with Ig-like domains.
10    sPvr is segmented into three well-defined Ig-like domains.
11  protein products with related extracellular Ig-like domains.
12 ogous to those of the three individual CD155 Ig-like domains.
13 ambda5/14.1, contain both unique regions and Ig-like domains.
14 e expression and purification of recombinant Ig-like domains.
15 n kinase which similarly contains associated Ig-like domains.
16 eraction of only the first two extracellular Ig-like domains.
17  superfamily composed of three extracellular Ig-like domains.
18  for A24nef, which is contacted by all three Ig-like domains.
19 aB-crystallin on the N2B-Us and its flanking Ig-like domains.
20 8-WT)), four (CD48-CD2), or five (CD48-CD22) Ig-like domains.
21 d a large extracellular region composed of 3 Ig-like domains.
22 CD147, a transmembrane glycoprotein with two Ig-like domains.
23 ity is mainly caused by the unfolding of its Ig-like domains.
24 ds to the sequential unfolding of individual Ig-like domains.
25 regulated through unfolding/refolding of its Ig-like domains.
26 s comprising serially linked immunoglobulin (Ig)-like domains.
27 lycosylation, and 12 C2-type immunoglobulin (Ig)-like domains.
28 differing in their number of immunoglobulin (Ig)-like domains.
29 acellular regions similar to immunoglobulin (Ig)-like domains.
30 motifs, followed by two immunoglobulin like (Ig-like) domains.
31 r (alphaPDGFR) extracellular Immunoglobulin (Ig) like domains 1-3 contain major determinants for liga
32                              Deletion of the Ig-like domain 1 (D1) of gp130, but not anti-gp130 mAbs
33 d IIIc ("c"), that encode the second half of Ig-like domain 3 (D3) of FGFRs.
34 c alternative splicing in the second half of Ig-like domain 3 (D3) of fibroblast growth factor recept
35 ed protein: 182 and 283 in the extracellular Ig-like domains, 320 in the transmembrane region, and 37
36 ernatively spliced isoform of VCAM-1 lacking Ig-like domain 4) binds alpha4beta1 with a higher relati
37 ding was evident on a L1 fragment containing Ig-like domains 4, 5, and 6.
38                                   Removal of Ig-like domains 4, 5, or 6, or simply substituting Asp32
39                     It is concluded that KDR Ig-like domains 4-7 contain structural features that inh
40 ive versus mutant receptor proteins in which Ig-like domains 4-7, 4-6, or 7 had been deleted.
41        To clarify the functional role of KDR Ig-like domains 4-7, we compared VEGF-induced signaling
42 dicted extracellular portion of Mep bears an Ig-like domain, a cysteine-rich region, and sequences ho
43                 The Hibris protein has eight Ig-like domains, a fibronectin domain and a 160 amino ac
44 tatory organs and encoded a protein with two Ig-like domains, a single putative transmembrane domain,
45 at shares a similar structure including five Ig-like domains, a transmembrane domain, and a cytoplasm
46  mutations in the same region of the tapasin Ig-like domain affect MHC class I surface expression and
47 that lamin A variants, which destabilize the Ig-like domain, affect protein-protein interactions more
48 consists of the partial 11th and entire 12th Ig-like domain (amino acids 1014-1119).
49  The transcript consists of 11 exons with an Ig-like domain, an epidermal growth factor-like (EGF) do
50 todomain consisting of three immunoglobulin (Ig)-like domains and nine fibronectin type III (FnIII) r
51  The C-terminal PSK domain is adjacent to an Ig-like domain and is most similar to calcium/calmodulin
52                                    The first Ig-like domain and second fibronectin type III-like doma
53  Killer cell Ig-like receptor (KIR) with two Ig-like domains and a long cytoplasmic domain 4 (2DL4; C
54 ated form of ICAM-1 containing the first two Ig-like domains and a peptide with amino acid sequence c
55                It binds to Bcl10 through its Ig-like domains and cooperates with Bcl10 to activate NF
56 eins with six highly conserved extracellular Ig-like domains and distinctive membrane proximal, trans
57 t-associated receptor (OSCAR), which has two Ig-like domains and functions as a bone-specific regulat
58 ine sCEACAM1a[1,4], which is composed of two Ig-like domains and has MHV neutralizing activity.
59             Both mSiglecs have extracellular Ig-like domains and intracellular tyrosine-based motifs.
60                             It contains five Ig-like domains and is a sialic binding protein.
61   The ectodomain of MAG is comprised of five Ig-like domains and uses neuronal cell-type-specific mec
62 hat contains an N-terminal death domain, two Ig-like domains, and a C-terminal caspase-like domain.
63  extracellular region of ALCAM includes five Ig-like domains, and its N-terminal V-like domain specif
64  presence but not specific properties of the Ig-like domain are needed.
65                                              Ig-like domains are among the most widely represented pr
66 of the second and third immunoglobulin-like (Ig-like) domains are deleted.
67   Conversely, the FnIII domains, but not the Ig-like domains, are required during oogenesis, suggesti
68                         In particular, phage Ig-like domains bind variable glycan residues that coat
69 nd without the IG-like domain, we found that IG-like domain binding to endogenous HSPGs produces a 4-
70  interactions involving its first N-terminal Ig-like domain, but it is still unclear which sequences
71              Analyses of TPV-15L revealed no Ig-like domain, but it retains the ability to bind hepar
72                                          The Ig-like domains, but not the FnIII domains, are essentia
73 ure and interactions of the cardiac-specific Ig-like domain C0, a part of cardiac MyBP-C of which lit
74 ceptor distinct from that of the other CD147 Ig-like domains, CD147 Ig1-Ig2.
75 mains (CD8(f)) or their respective component Ig-like domains (CD8) were expressed in Chinese hamster
76 only the N-terminal death domain and the two Ig-like domains completely blocked CD3/CD28 costimulatio
77                                   All of the Ig-like domains contain the two conserved cysteine resid
78 t for paracellular water permeation and that Ig-like domain containing receptor 1 (ILDR1) regulates i
79         Tricellulin and immunoglobulin-like (Ig-like) domain containing receptor 1 (ILDR1, also refer
80     Here it is shown that elimination of the Ig-like domain-containing neuregulins by homologous reco
81                      Leucine-rich repeat and Ig-like domain-containing Nogo receptor interacting prot
82 ly demonstrated that leucine-rich repeat and Ig-like domain-containing Nogo receptor interacting prot
83 rial subunits that makes them peculiar among Ig-like domain-containing proteins is a conserved disulf
84 , CD, DE, and FG loops of the amino-terminal Ig-like domain (D1) at the end distal to the cellular me
85 ra-cellular portion of pIgR consists of five Ig-like domains (D1-D5), each of which contains 104-114
86 teral interactions between membrane proximal Ig-like domains D4 and D5 of two KIT molecules.
87 led a sequence motif in a loop in the fourth Ig-like domain (D4) that is responsible for forming homo
88 oncogenic mutation located in the C-terminal Ig-like domain (D5) of the ectodomain, rendering KIT tyr
89 tified in the most membrane-proximal seventh Ig-like domain (D7) of vascular endothelial growth facto
90 of an FcgammaRI with all three extracellular Ig-like domains (designated as D1, D2, and D3).
91 tructural motifs located in the two adjacent Ig-like domains dictate the processing of CTDs by the T9
92 rtion of CAR consists of two immunoglobulin (Ig)-like domains, each with a consensus sequence for N-g
93 n alpha-helical capsid-binding domain and an Ig-like domain exposed to the solvent.
94 nique protein architecture consisting of two Ig-like domains followed by an elongated beta-stranded d
95 rotein consists of four immunoglobulin-like (Ig-like) domains followed by six fibronectin type III do
96 of a single C2-type Ig domain resembling the Ig-like domains found in mammalian Fc receptors such as
97 which its Ig-like domain was replaced by the Ig-like domain from mouse IZUMO1.
98                       Here, we show that the IG-like domain functions to keep the EGF-like domain at
99 ll-surface receptor, which contains a single Ig-like domain, has been shown to bind to SHP-1 and SHP-
100 ately 60 kD, which contains an extracellular Ig-like domain homologous to two other IgM-binding recep
101        We generated a mouse model in which 9 Ig-like domains (Ig3-Ig11) were deleted from the proxima
102              Addition of the N-terminal (D1) Ig-like domain (IGD) of gp130 to the CHR results in a tr
103 terminal actin-binding domain followed by 24 Ig-like domains (IgFLNs), which interact with numerous t
104 ies of CD147 to its transmembrane domain and Ig-like domain II.
105 253R) in the highly conserved region linking Ig-like domains II and III of FGFR2.
106                                 We show that Ig-like domains II-XVI are involved in strong calcium-in
107 ain in nidogen and the third immunoglobulin (IG)-like domain in perlecan, IG3.
108 onds, one involving all five immunoglobulin (Ig)-like domains in an antiparallel alignment and the ot
109 te in the fourth of the five immunoglobulin (Ig)-like domains in Kit.
110 oth Flt-1 and KDR have seven immunoglobulin (Ig)-like domains in the extracellular domain.
111     Full length CD80 has two immunoglobulin (Ig)-like domains in the extracellular portion, IgC and I
112 -1-Delta2) to examine the role of the second Ig-like domain in HSV entry.
113 complex requires the membrane-proximal third Ig-like domain in IL-18Ralpha for the formation of IL-18
114       Further, we demonstrate that the first Ig-like domain in MuSK, which shares homology with the N
115 sults reveal a critical role for the tapasin Ig-like domain in tapasin function.
116 globulin (Ig) superfamily and contains three Ig-like domains in its extracellular portion.
117 ing either two or four alternatively spliced Ig-like domains in mice have been found in a number of e
118 ns reveal the presence of different types of Ig-like domains in the same phylogenetic groups, as well
119 ve agreement with force-induced unfolding of Ig-like domains in titin.
120 heterodimers, the presence of the N-terminal Ig-like domain is required for efficient signal attenuat
121      These results demonstrate that a single Ig-like domain is the major determinant for VEGF-PlGF in
122 d predominant expression of the larger, four Ig-like domain isoform of B7-H3.
123 his suggests that these regions of the first Ig-like domain may contain or be close to binding sites
124 hese results provide the first example of an Ig-like domain mediating an interaction with an SRCR dom
125 h a separate interaction, leptin engages the Ig-like domain of a second liganded LEP-R, resulting in
126    sALCAM contains the single amino-terminal Ig-like domain of ALCAM and lacks a transmembrane domain
127 diate the interaction with the extracellular Ig-like domain of beta1, confirming the proposed functio
128 highly polymorphic in contrast to the single Ig-like domain of CD47.
129 ithout altering the overall structure of the Ig-like domain of CD8alpha or causing the MHCI to employ
130 his study, we report that the amino-terminal Ig-like domain of human ALCAM specifically binds to the
131             These data argue that the fourth Ig-like domain of Kit is not required for SCF-induced re
132 tion of an RGD sequence present in the sixth Ig-like domain of L1 abrogated M21 cell adhesion.
133 w that CDT interacts with the extracellular, Ig-like domain of LSR with an affinity in the nanomolar
134 tructural motifs that bind to the N-terminal Ig-like domain of mCEACAM1a.
135  presence of a nine-amino acid region in the Ig-like domain of mouse or human tapasin is required for
136 SK bind to a structural epitope in the first Ig-like domain of MuSK, prevent binding between MuSK and
137  functionally important regions of the first Ig-like domain of PECAM-1 that are required for the part
138 KP(621) downward arrowLI site in the seventh Ig-like domain of PTK7.
139 57BL/6 mice immunized with the extracellular Ig-like domain of rat myelin oligodendrocyte glycoprotei
140  we showed that the cysteine residues in the Ig-like domain of tapasin influence tapasin's stability,
141 otypic interactions in the membrane proximal Ig-like domain of the extracellular region differ from t
142 ated in Arg-385 or Glu-390 in D4 (the fourth Ig-like domain of the extracellular region) was compromi
143 21) downward arrowLI sequence of the seventh Ig-like domain of the full-length membrane PTK7 and gene
144 tein-geranyl-geranyl interaction face of the Ig-like domain of the Rho guanine nucleotide dissociatio
145                      A mutation in the tenth Ig-like domain of titin's spring region is associated wi
146 lass II interact with the two amino-terminal Ig-like domains of CD4.
147               These results suggest that the Ig-like domains of CD8 molecules are themselves sufficie
148 rce measurements to reveal how the first two Ig-like domains of cMyPB-C (C0 and C1) interact with the
149 ors where the first three or just the second Ig-like domains of Flt-1 replaced the corresponding doma
150 that B27(2) bound to the two membrane distal Ig-like domains of LILRB2.
151                 We show that the first three Ig-like domains of MAG bind with high affinity and in a
152                                          The Ig-like domains of mouse CD8alphabeta and CD8alphaalpha
153                          The four N-terminal Ig-like domains of neurofascin form a horseshoe shape, a
154 ntly, we show that antibodies raised against Ig-like domains of polycystin-1 disrupt cell-cell intera
155 ction region between the fifth and the sixth Ig-like domains of PTK7.
156               They bind to the extracellular Ig-like domains of soluble or native MuSK.
157                KIR2DL5 has two extracellular Ig-like domains of the D0 and D2 type, a structural conf
158  structure reveals that MuSK Ig1 and Ig2 are Ig-like domains of the I-set subfamily, which are config
159 d that in the physiological SL range (a) the Ig-like domains of the tandem Ig segments remain folded
160                                          The Ig-like domains of Trk receptors and the cysteine-rich r
161  receptor (KDR) contains seven extracellular Ig-like domains, of which the three most amino-terminal
162  II complexes utilize an unusual top-mounted Ig-like domain on IL-13R alpha1 for a novel mode of cyto
163 ike domain located C-terminally to either an Ig-like domain or a cysteine-rich domain specific to the
164 hesive domains of polycystin-1, including 16 Ig-like domains (or PKD domains) suggests that it may pl
165            In contrast, glycosylation of the Ig-like domain proximal to the membrane is key to the co
166                                We found that Ig-like domains refold after mechanical unfolding.
167 pe I transmembrane protein with two pairs of Ig-like domains separated by a heptad peptide sequence.
168 e single-pass transmembrane proteins with an Ig-like domain, share the same subcellular distribution
169 ative bovine ICAM-3 has five immunoglobulin (Ig)-like domains similar to human ICAM-1 and ICAM-3, and
170 composed of four structural domains, namely, Ig-like domain, stalk region, transmembrane region, and
171 e (TM) protein with a single immunoglobulin (Ig)-like domain that is absolutely required for gamete f
172 phorylation, many spliced forms also have an IG-like domain that binds HSPGs and maintains a high con
173          Human and macaque MAdCAM-1 have two Ig-like domains that are similar to the two amino-termin
174  B7-H3 (named as B7-H3b hereafter) with four Ig-like domains that results from gene duplication and d
175  identified key residues in the D0 and other Ig-like domains that were shared and distinct from KIR3D
176 ts of force extension on the globular (FNIII/Ig-like) domains that comprise each protein.
177 nected to a carboxy-terminal immunoglobulin (Ig)-like domain through a beta-hairpin stabilized by dis
178 tate each of its first three immunoglobulin (Ig)-like domains to interact with SCF.
179  PD-1 use only the front beta-sheet of their Ig-like domain to bind ligands, NKp30 uses both front an
180 consist of variable numbers of extracellular Ig-like domains together with either a long cytoplasmic
181 stence length (0.43 +/- 0.04 nm), individual Ig-like domain unfolding forces (118 +/- 3 pN), or Ig ex
182  gD binding site is located within the first Ig-like domain (V domain) of HveC.
183 ressing chimeric SPE-45 protein in which its Ig-like domain was replaced by the Ig-like domain from m
184 at contains an extracellular immunoglobulin (Ig)-like domain, we postulated that it plays a role in T
185  the effects of substitutions in the tapasin Ig-like domain, we demonstrated that H-2L(d)/tapasin ass
186 recombinant neuregulins with and without the IG-like domain, we found that IG-like domain binding to
187 red protein of 181 amino acids with a single Ig-like domain weakly homologous to killer inhibitory re
188 dies (mAb) directed against individual PDGFR Ig-like domains were used to extend these observations.
189 mbinant mutants mapped the difference to the Ig-like domains, where site-directed mutagenesis showed
190 interaction is mediated mostly by the second Ig-like domain, which features an intermolecular beta-sh
191 st of tandem repeats of between two and five Ig-like domains whose amino-terminal domains (D1) intera
192 egulation was maintained after replacing the Ig-like domain with a thioredoxin protein of comparable

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