Javascript must be enabled to continue!
A myofibrillar protein of insect muscle related to vertebrate titin connects Z band and A band: purification and molecular characterization of invertebrate mini-titin
View through CrossRef
ABSTRACT
We show that myofibrils of insect flight and leg muscle contain a doublet of polypeptides with apparent molecular weights of 700K (K=103Mr) (Hmp I) and 600K (Hmp H), respectively. In Locusta migratoria high ionic strength extraction solubilizes only Hmp II, which is readily purified in native form. It probably reflects a proteolytic derivative of the non-extractable Hmp I. On the basis of its viscosity radius and sedimentation coefficient, Hmp II has a molecular weight of 600K and seems to consist of a single polypeptide chain. The highly asymmetric structure of the molecule is confirmed by rotary shadowing. The flexible rods have a uniform diameter of 3-4 nm and an average length of 260 nm. Polyclonal antibodies show crossreactivity between Hmp II and its putative precursor Hmp I. We discuss the similarities and differences between the larger titin l/titin II of vertebrate sarcomeric muscle and the smaller Hmp l/Hmp II of invertebrate muscle and conclude that the latter may reflect a mini-titin. In line with the smaller length, immunoelectron microscopy locates the insect mini-titin to the I band and a very short portion of the A band only, while vertebrate titin is known to connect the Z band to the M band. Mini-titin has also been purified from several other insects including Drosophila. Immunofluorescence microscopy on frozen sections shows that mini-titin is present in the sarcomeric muscles of various species from different invertebrate phyla. These include Annelida, Nematomorpha, Plathelmintha, Nemertea and Nematoda like Ascaris lumbricoides and Caenorhabditis elegans. This wide-spread occurrence of invertebrate mini-titin is confirmed by immunoblotting experiments.
Title: A myofibrillar protein of insect muscle related to vertebrate titin connects Z band and A band: purification and molecular characterization of invertebrate mini-titin
Description:
ABSTRACT
We show that myofibrils of insect flight and leg muscle contain a doublet of polypeptides with apparent molecular weights of 700K (K=103Mr) (Hmp I) and 600K (Hmp H), respectively.
In Locusta migratoria high ionic strength extraction solubilizes only Hmp II, which is readily purified in native form.
It probably reflects a proteolytic derivative of the non-extractable Hmp I.
On the basis of its viscosity radius and sedimentation coefficient, Hmp II has a molecular weight of 600K and seems to consist of a single polypeptide chain.
The highly asymmetric structure of the molecule is confirmed by rotary shadowing.
The flexible rods have a uniform diameter of 3-4 nm and an average length of 260 nm.
Polyclonal antibodies show crossreactivity between Hmp II and its putative precursor Hmp I.
We discuss the similarities and differences between the larger titin l/titin II of vertebrate sarcomeric muscle and the smaller Hmp l/Hmp II of invertebrate muscle and conclude that the latter may reflect a mini-titin.
In line with the smaller length, immunoelectron microscopy locates the insect mini-titin to the I band and a very short portion of the A band only, while vertebrate titin is known to connect the Z band to the M band.
Mini-titin has also been purified from several other insects including Drosophila.
Immunofluorescence microscopy on frozen sections shows that mini-titin is present in the sarcomeric muscles of various species from different invertebrate phyla.
These include Annelida, Nematomorpha, Plathelmintha, Nemertea and Nematoda like Ascaris lumbricoides and Caenorhabditis elegans.
This wide-spread occurrence of invertebrate mini-titin is confirmed by immunoblotting experiments.
Related Results
7
th
International Symposium on Enabling Technologies for Life Sciences (ETP)
7
th
International Symposium on Enabling Technologies for Life Sciences (ETP)
The seventh in the series of ETP Symposia (see
Rapid Communications in Mass Spectrometry
2012,
26
, ...
Deleting Full Length Titin Versus the Titin M-Band Region Leads to Differential Mechanosignaling and Cardiac Phenotypes
Deleting Full Length Titin Versus the Titin M-Band Region Leads to Differential Mechanosignaling and Cardiac Phenotypes
Background:
Titin is a giant elastic protein that spans the half-sarcomere from Z-disk to M-band. It acts as a molecular spring and mechanosensor and has been linked to...
Poster 247: Muscle ERRγ Overexpression Mitigates the Muscle Atrophy after ACL injury
Poster 247: Muscle ERRγ Overexpression Mitigates the Muscle Atrophy after ACL injury
Objectives:
Anterior cruciate ligament (ACL) reconstruction is the 6th most common orthopedic procedure performed in the United States (1,2). There is substanti...
579. Epidemiological Data Differences between Gel-purified vs. DNA-purified Oral Polio Vaccine in environmental samples
579. Epidemiological Data Differences between Gel-purified vs. DNA-purified Oral Polio Vaccine in environmental samples
Abstract
Background
As wild poliovirus is eradicated, preventing circulation of vaccine-derived poliovirus is top priority. Our ...
Titin in insect spermatocyte spindle fibers associates with microtubules, actin, myosin and the matrix proteins skeletor, megator and chromator
Titin in insect spermatocyte spindle fibers associates with microtubules, actin, myosin and the matrix proteins skeletor, megator and chromator
Titin, the giant elastic protein found in muscles, is present in spindles of crane-fly and locust spermatocytes as determined by immunofluorescence staining using three antibodies,...
Titin Gene (
TTN
)
Titin Gene (
TTN
)
Abstract
The titin locus located on chromosome 2q24 in the human genome expresses about 100 kb full‐length mRNAs, that are transl...
Lectin C gene analysis v1
Lectin C gene analysis v1
Mammalian Tissue Total RNA Purification Protocol by GeneJET RNA Purification Kit (Thermo Scientific, USA) Before starting: • Supplement the required amount of Lysis Buffer with β-...
Molecular identification and localization of cellular titin, a novel titin isoform in the fibroblast stress fiber
Molecular identification and localization of cellular titin, a novel titin isoform in the fibroblast stress fiber
AbstractWe previously discovered a large titin‐like protein—c‐titin—in chicken epithelial brush border and human blood platelet extracts that binds α‐actinin and organizes arrays o...

