2zg3: Difference between revisions

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==Overview==
==Overview==
Sialic acid (Sia) Ig-like binding lectins are important mediators of, recognition and signaling events among myeloid cells. To investigate the, molecular mechanism underlying sialic acid Ig-like lectin (Siglec), functions, we determined the crystal structure of the two N-terminal, extracellular domains of human myeloid cell inhibitory receptor Siglec-5, (CD170) and its complexes with two sialylated carbohydrates. The native, structure revealed an unusual conformation of the CC' ligand specificity, loop and a unique interdomain disulfide bond. The alpha(2,3)- and, alpha(2,6)-sialyllactose complexed structures showed a conserved Sia, recognition motif that involves both Arg124 and a portion of the G-strand, in the V-set domain forming beta-sheet-like hydrogen bonds with the, glycerol side chain of the Sia. Only few protein contacts to the, subterminal sugars are observed and mediated by the highly variable GG', linker and CC' loop. These structural observations, in conjunction with, surface plasmon resonance binding assays, provide mechanistic insights, into linkage-dependent Siglec carbohydrate recognition and suggest that, Siglec-5 and other CD33-related Siglec receptors are more promiscuous in, sialoglycan recognition than previously understood.
Sialic acid (Sia) Ig-like binding lectins are important mediators of recognition and signaling events among myeloid cells. To investigate the molecular mechanism underlying sialic acid Ig-like lectin (Siglec) functions, we determined the crystal structure of the two N-terminal extracellular domains of human myeloid cell inhibitory receptor Siglec-5 (CD170) and its complexes with two sialylated carbohydrates. The native structure revealed an unusual conformation of the CC' ligand specificity loop and a unique interdomain disulfide bond. The alpha(2,3)- and alpha(2,6)-sialyllactose complexed structures showed a conserved Sia recognition motif that involves both Arg124 and a portion of the G-strand in the V-set domain forming beta-sheet-like hydrogen bonds with the glycerol side chain of the Sia. Only few protein contacts to the subterminal sugars are observed and mediated by the highly variable GG' linker and CC' loop. These structural observations, in conjunction with surface plasmon resonance binding assays, provide mechanistic insights into linkage-dependent Siglec carbohydrate recognition and suggest that Siglec-5 and other CD33-related Siglec receptors are more promiscuous in sialoglycan recognition than previously understood.


==About this Structure==
==About this Structure==
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[[Category: Homo sapiens]]
[[Category: Homo sapiens]]
[[Category: Single protein]]
[[Category: Single protein]]
[[Category: Sun, P.D.]]
[[Category: Sun, P D.]]
[[Category: Zhuravleva, M.A.]]
[[Category: Zhuravleva, M A.]]
[[Category: 3'-sialyllactose complex]]
[[Category: 3'-sialyllactose complex]]
[[Category: c2-set]]
[[Category: c2-set]]
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[[Category: v-set]]
[[Category: v-set]]


''Page seeded by [http://oca.weizmann.ac.il/oca OCA ] on Wed Feb 13 08:15:12 2008''
''Page seeded by [http://oca.weizmann.ac.il/oca OCA ] on Thu Feb 21 19:01:39 2008''