AbstractMutations in the zebrafish connexin43 (cx43) gene cause the short fin phenotype, indicating that direct cell–cell communication contributes to bone length. Three independently generated cx43 alleles exhibit short segments of variable sizes, suggesting that gap junctional intercellular communication may regulate bone growth. Dye coupling assays showed that all alleles are capable of forming gap junction channels. However, ionic coupling assays revealed allele-specific differences in coupling efficiency and gating. For instance, oocyte pairs expressing the weakest allele exhibited much higher levels of coupling than either of the strong alleles. Therefore, measurable differences in Cx43 function may be correlated with the severity of ...
Gap junctions are formed from ubiquitously expressed proteins called connexins that allow the transf...
AbstractGap junctional intercellular communication (GJIC) mediated by connexins, in particular conne...
AbstractThere are now at least 14 distinct diseases linked to germ line mutations in the 21 genes th...
AbstractMutations in the zebrafish connexin43 (cx43) gene cause the short fin phenotype, indicating ...
AbstractMechanisms that regulate the size and shape of bony structures are largely unknown. The mole...
AbstractIn zebrafish, mutations in the gap junction gene connexin43 lead to short bony fin ray segme...
AbstractJoints are essential for skeletal form and function, yet their development remains poorly un...
The zebrafish fin is composed of multiple bony fin rays. Each fin ray is comprised of multiple segme...
AbstractIn addition to having a Cx43 ortholog, the zebrafish genome also contains a Cx43-like gene, ...
Skeletal morphogenesis is a complex process through which bones grow to their correct size and shape...
AbstractGap junctions are proteinaceous channels that reside at the plasma membrane and permit the e...
<div><p>Cell–cell communication, facilitating the exchange of small metabolites, ions and second mes...
Joints are essential for skeletal flexibly and form, yet the process underlying joint morphogenesis ...
<div><p>Connexins (Cx) are the subunits of gap junctions, membraneous protein channels that permit t...
Connexin43 (Cx43) encodes a gap junction protein. Cx43 is specifically expressed in blood vessel end...
Gap junctions are formed from ubiquitously expressed proteins called connexins that allow the transf...
AbstractGap junctional intercellular communication (GJIC) mediated by connexins, in particular conne...
AbstractThere are now at least 14 distinct diseases linked to germ line mutations in the 21 genes th...
AbstractMutations in the zebrafish connexin43 (cx43) gene cause the short fin phenotype, indicating ...
AbstractMechanisms that regulate the size and shape of bony structures are largely unknown. The mole...
AbstractIn zebrafish, mutations in the gap junction gene connexin43 lead to short bony fin ray segme...
AbstractJoints are essential for skeletal form and function, yet their development remains poorly un...
The zebrafish fin is composed of multiple bony fin rays. Each fin ray is comprised of multiple segme...
AbstractIn addition to having a Cx43 ortholog, the zebrafish genome also contains a Cx43-like gene, ...
Skeletal morphogenesis is a complex process through which bones grow to their correct size and shape...
AbstractGap junctions are proteinaceous channels that reside at the plasma membrane and permit the e...
<div><p>Cell–cell communication, facilitating the exchange of small metabolites, ions and second mes...
Joints are essential for skeletal flexibly and form, yet the process underlying joint morphogenesis ...
<div><p>Connexins (Cx) are the subunits of gap junctions, membraneous protein channels that permit t...
Connexin43 (Cx43) encodes a gap junction protein. Cx43 is specifically expressed in blood vessel end...
Gap junctions are formed from ubiquitously expressed proteins called connexins that allow the transf...
AbstractGap junctional intercellular communication (GJIC) mediated by connexins, in particular conne...
AbstractThere are now at least 14 distinct diseases linked to germ line mutations in the 21 genes th...