kcc kcl jpm capelle ysl ijsseland klinische chemie | Algemeen Klinisch Laboratorium kcc kcl jpm capelle ysl ijsseland klinische chemie We sought to characterize and compare human KCC isoforms expressed in human cells (HEK 293) and assess their similarity to KCC activity in RBC. cDNAs for human .
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0 · Structural and Functional Interactions of KCl Cotransport Proteins
1 · Molecular insights into the normal operation, regulation, and
2 · Molecular evidence for a role for K+
3 · K
4 · InterPro
5 · Insulin
6 · Functional Comparison of the K+
7 · Functional Comparison of Red Cell KCl Cotransporter Isoforms,
8 · Differences in the Large Extracellular Loop between the K
9 · Algemeen Klinisch Laboratorium
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These data indicate that KCC1 and KCC3 interact structurally and functionally in RBC membranes, and provide another potential mechanism for regulation of KCC activity via .KCC2 and KCC4 markedly differ in their sensitivity to loop diuretics; KCC2 displays the lowest (∼50 μ m) and KCC displays the highest IC 50 value (∼900 μ m) among the four KCC family .The K + -Cl − cotransporters (KCCs) are members of the cation-chloride cotransporter gene family and fall into two phylogenetic subgroups: KCC2 paired with KCC4 and KCC1 paired with .The mechanisms by which insulin-like growth factor 1 (IGF-1) cooperates with membrane ion transport system to modulate epithelial cell motility and proliferation remain poorly understood. .
Here, we review KCC function in nervous system cell volume homeostasis by focusing on data derived from genetic models of the KCCs or their kinase regulators, and the . We sought to characterize and compare human KCC isoforms expressed in human cells (HEK 293) and assess their similarity to KCC activity in RBC. cDNAs for human .
Potassium-chloride cotransporter type 3 (KCC3) has evolved from a common ancestor in bacterium and falls into one of four clades, that is, in the Na + -independent K + . the electroneutral movement of K + and Cl − across the plasma membrane is accomplished by a group of secondary active transport proteins known as K + -Cl − .K+Cl- cotransporters (KCCs) belong to the SLC12 family and act as electroneutral symporters of K+ and Cl- ions across the plasma membrane. [ 1, 2] They are major determinants of osmotic .Het Algemeen Klinisch Laboratorium (AKL) van het IJsselland Ziekenhuis bestaat uit het Klinisch Chemisch Laboratorium (KCL) en het Medisch Microbiologisch Laboratorium (MML). Het AKL .
These data indicate that KCC1 and KCC3 interact structurally and functionally in RBC membranes, and provide another potential mechanism for regulation of KCC activity via multimeric associations between KCC isoforms.KCC2 and KCC4 markedly differ in their sensitivity to loop diuretics; KCC2 displays the lowest (∼50 μ m) and KCC displays the highest IC 50 value (∼900 μ m) among the four KCC family members (13, 24, 25).The K + -Cl − cotransporters (KCCs) are members of the cation-chloride cotransporter gene family and fall into two phylogenetic subgroups: KCC2 paired with KCC4 and KCC1 paired with KCC3. We report a functional comparison in Xenopus oocytes of KCC1 and KCC4, widely expressed representatives of these two subgroups.The mechanisms by which insulin-like growth factor 1 (IGF-1) cooperates with membrane ion transport system to modulate epithelial cell motility and proliferation remain poorly understood. Here, we investigated the role of electroneutral KCl cotransport (KCC), in IGF-1-dependent invasiveness and proliferation of cervical and ovarian cancer cells.
Here, we review KCC function in nervous system cell volume homeostasis by focusing on data derived from genetic models of the KCCs or their kinase regulators, and the physiological studies performed in these models.
Structural and Functional Interactions of KCl Cotransport Proteins
Molecular insights into the normal operation, regulation, and
We sought to characterize and compare human KCC isoforms expressed in human cells (HEK 293) and assess their similarity to KCC activity in RBC. cDNAs for human KCC1, KCC1ex1b, KCC3a, and KCC4, with N-terminal c-myc epitope tags were expressed in . Potassium-chloride cotransporter type 3 (KCC3) has evolved from a common ancestor in bacterium and falls into one of four clades, that is, in the Na + -independent K + -coupled Cl − cotransporters. Scale is in genetic distance.
the electroneutral movement of K + and Cl − across the plasma membrane is accomplished by a group of secondary active transport proteins known as K + -Cl − cotransporters (KCCs).
K+Cl- cotransporters (KCCs) belong to the SLC12 family and act as electroneutral symporters of K+ and Cl- ions across the plasma membrane. [ 1, 2] They are major determinants of osmotic homeostasis. They are involved in the regulatory volume decrease in response to cell swelling in red blood cells, and have been proposed to play a role in the .Het Algemeen Klinisch Laboratorium (AKL) van het IJsselland Ziekenhuis bestaat uit het Klinisch Chemisch Laboratorium (KCL) en het Medisch Microbiologisch Laboratorium (MML). Het AKL biedt een breed pakket speciale laboratoriumbepalingen voor concurrerende prijzen. These data indicate that KCC1 and KCC3 interact structurally and functionally in RBC membranes, and provide another potential mechanism for regulation of KCC activity via multimeric associations between KCC isoforms.
KCC2 and KCC4 markedly differ in their sensitivity to loop diuretics; KCC2 displays the lowest (∼50 μ m) and KCC displays the highest IC 50 value (∼900 μ m) among the four KCC family members (13, 24, 25).The K + -Cl − cotransporters (KCCs) are members of the cation-chloride cotransporter gene family and fall into two phylogenetic subgroups: KCC2 paired with KCC4 and KCC1 paired with KCC3. We report a functional comparison in Xenopus oocytes of KCC1 and KCC4, widely expressed representatives of these two subgroups.The mechanisms by which insulin-like growth factor 1 (IGF-1) cooperates with membrane ion transport system to modulate epithelial cell motility and proliferation remain poorly understood. Here, we investigated the role of electroneutral KCl cotransport (KCC), in IGF-1-dependent invasiveness and proliferation of cervical and ovarian cancer cells.
Here, we review KCC function in nervous system cell volume homeostasis by focusing on data derived from genetic models of the KCCs or their kinase regulators, and the physiological studies performed in these models. We sought to characterize and compare human KCC isoforms expressed in human cells (HEK 293) and assess their similarity to KCC activity in RBC. cDNAs for human KCC1, KCC1ex1b, KCC3a, and KCC4, with N-terminal c-myc epitope tags were expressed in . Potassium-chloride cotransporter type 3 (KCC3) has evolved from a common ancestor in bacterium and falls into one of four clades, that is, in the Na + -independent K + -coupled Cl − cotransporters. Scale is in genetic distance.
the electroneutral movement of K + and Cl − across the plasma membrane is accomplished by a group of secondary active transport proteins known as K + -Cl − cotransporters (KCCs).K+Cl- cotransporters (KCCs) belong to the SLC12 family and act as electroneutral symporters of K+ and Cl- ions across the plasma membrane. [ 1, 2] They are major determinants of osmotic homeostasis. They are involved in the regulatory volume decrease in response to cell swelling in red blood cells, and have been proposed to play a role in the .
Molecular evidence for a role for K+
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kcc kcl jpm capelle ysl ijsseland klinische chemie|Algemeen Klinisch Laboratorium