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In vivo threonine phosphorylation of immunoglobulin binding protein (BiP) maps to its protein binding domain.免疫球蛋白结合蛋白(BiP)在体内的苏氨酸磷酸化作用定位于其蛋白质结合结构域。
Cell Stress Chaperones. 1997 Dec;2(4):252-62. doi: 10.1379/1466-1268(1997)002<0252:ivtpoi>2.3.co;2.
2
The immunoglobulin-binding protein in vitro autophosphorylation site maps to a threonine within the ATP binding cleft but is not a detectable site of in vivo phosphorylation.免疫球蛋白结合蛋白的体外自磷酸化位点定位于ATP结合裂隙内的一个苏氨酸,但不是体内磷酸化的可检测位点。
J Biol Chem. 1993 Jun 15;268(17):12691-8.
3
Mutations within the nucleotide binding site of immunoglobulin-binding protein inhibit ATPase activity and interfere with release of immunoglobulin heavy chain.免疫球蛋白结合蛋白的核苷酸结合位点内的突变会抑制ATP酶活性,并干扰免疫球蛋白重链的释放。
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4
ATP hydrolysis is not required for the dissociation of a substance P.BiP complex.P物质与BiP复合物的解离不需要ATP水解。
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Substrate binding induces depolymerization of the C-terminal peptide binding domain of murine GRP78/BiP.底物结合诱导小鼠GRP78/BiP的C端肽结合结构域解聚。
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Mapping the major interaction between binding protein and Ig light chains to sites within the variable domain.将结合蛋白与免疫球蛋白轻链之间的主要相互作用定位到可变区内的位点。
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Identity of the immunoglobulin heavy-chain-binding protein with the 78,000-dalton glucose-regulated protein and the role of posttranslational modifications in its binding function.免疫球蛋白重链结合蛋白与78,000道尔顿葡萄糖调节蛋白的同一性及其翻译后修饰在其结合功能中的作用。
Mol Cell Biol. 1988 Oct;8(10):4250-6. doi: 10.1128/mcb.8.10.4250-4256.1988.
8
BiP and immunoglobulin light chain cooperate to control the folding of heavy chain and ensure the fidelity of immunoglobulin assembly.结合免疫球蛋白蛋白(BiP)与免疫球蛋白轻链协同作用,以控制重链折叠并确保免疫球蛋白组装的准确性。
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Identification of immunoglobulin heavy chain binding protein as glucose-regulated protein 78 on the basis of amino acid sequence, immunological cross-reactivity, and functional activity.基于氨基酸序列、免疫交叉反应性和功能活性,鉴定免疫球蛋白重链结合蛋白为葡萄糖调节蛋白78 。
J Cell Sci Suppl. 1989;11:115-37. doi: 10.1242/jcs.1989.supplement_11.10.
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Interaction of the chaperone BiP with an antibody domain: implications for the chaperone cycle.伴侣蛋白BiP与抗体结构域的相互作用:对伴侣蛋白循环的影响
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AMPylation targets the rate-limiting step of BiP's ATPase cycle for its functional inactivation.AMPylation 靶向 BiP 的 ATP 酶循环的限速步骤使其功能失活。
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rAMPing Up Stress Signaling: Protein AMPylation in Metazoans.增强应激信号传导:后生动物中的蛋白质腺苷酸化
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The Caenorhabditis elegans Protein FIC-1 Is an AMPylase That Covalently Modifies Heat-Shock 70 Family Proteins, Translation Elongation Factors and Histones.秀丽隐杆线虫蛋白FIC-1是一种AMPylase,可共价修饰热休克70家族蛋白、翻译延伸因子和组蛋白。
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BiP and its nucleotide exchange factors Grp170 and Sil1: mechanisms of action and biological functions.结合免疫球蛋白蛋白(BiP)及其核苷酸交换因子葡萄糖调节蛋白170(Grp170)和Sil1:作用机制与生物学功能
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Unfolded protein response-regulated Drosophila Fic (dFic) protein reversibly AMPylates BiP chaperone during endoplasmic reticulum homeostasis.未折叠蛋白反应调节的果蝇Fic(dFic)蛋白在内质网稳态过程中可逆地将腺苷一磷酸化基团转移至BiP伴侣蛋白上。
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GRP94: An HSP90-like protein specialized for protein folding and quality control in the endoplasmic reticulum.葡萄糖调节蛋白94:一种在内质网中专门负责蛋白质折叠和质量控制的热休克蛋白90样蛋白。
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免疫球蛋白结合蛋白(BiP)在体内的苏氨酸磷酸化作用定位于其蛋白质结合结构域。

In vivo threonine phosphorylation of immunoglobulin binding protein (BiP) maps to its protein binding domain.

作者信息

Gaut J R

机构信息

Department of Biological Chemistry, Institute of Gerontology, University of Michigan, Ann Arbor 48109, USA.

出版信息

Cell Stress Chaperones. 1997 Dec;2(4):252-62. doi: 10.1379/1466-1268(1997)002<0252:ivtpoi>2.3.co;2.

DOI:10.1379/1466-1268(1997)002<0252:ivtpoi>2.3.co;2
PMID:9495282
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC313004/
Abstract

Immunoglobin binding protein (BiP) molecules exist as both monomers and oligomers and phosphorylated BiP is restricted to the oligomeric pool. Modified BiP is not bound to proteins such as immunoglobulin heavy chain and consequently, may constitute an inactive form. Unlike earlier analysis of mammalian BiP isolated by two-dimensional gel electrophoresis, results here demonstrated that immunoprecipitated BiP displayed predominantly threonine phosphorylation with only a trace of detectable phosphoserine. Like other Hsp70 family members, BiP is comprised of three domains: an amino terminal domain which binds nucleotide, an 18 kilodalton domain which binds peptide, and a carboxyl terminal variable domain of unknown function. Cyanogen bromide cleavage and enzymatic digestion experiments mapped threonine phosphorylation to a site within a 47 amino acid sequence of the peptide binding domain which contains seven threonine residues. Partial proteinase K digestion in the presence of ATP independently verified that the in vivo phosphorylation site of mammalian (BiP) is located within the peptide binding domain. Furthermore, phosphorylation did not impede BiPs ATP-induced conformational change. Thus, the peptide binding domain of BiP is phosphorylated on threonine residue(s) mapping to not more than two tryptic fragments within the peptide binding domain. This location on the molecule could explain why phosphorylated BiP is not detected bound to proteins in vivo.

摘要

免疫球蛋白结合蛋白(BiP)分子以单体和寡聚体形式存在,磷酸化的BiP局限于寡聚体库。修饰后的BiP不与免疫球蛋白重链等蛋白质结合,因此可能构成一种无活性形式。与早期通过二维凝胶电泳分离的哺乳动物BiP分析不同,此处结果表明免疫沉淀的BiP主要显示苏氨酸磷酸化,仅可检测到微量的磷酸丝氨酸。与其他Hsp70家族成员一样,BiP由三个结构域组成:结合核苷酸的氨基末端结构域、结合肽的18千道尔顿结构域以及功能未知的羧基末端可变结构域。溴化氰裂解和酶切实验将苏氨酸磷酸化定位到肽结合结构域47个氨基酸序列内的一个位点,该序列包含7个苏氨酸残基。在ATP存在下进行的部分蛋白酶K消化独立验证了哺乳动物BiP的体内磷酸化位点位于肽结合结构域内。此外,磷酸化并未阻碍BiP的ATP诱导的构象变化。因此,BiP的肽结合结构域在苏氨酸残基上发生磷酸化,定位在肽结合结构域内不超过两个胰蛋白酶片段。分子上的这个位置可以解释为什么在体内未检测到磷酸化的BiP与蛋白质结合。